t_rfield Struct Reference

#include <rfield.h>

Collaboration diagram for t_rfield:
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Public Member Functions

 t_rfield ()
const realnumgetCoarseTransCoef ()
void setCoarseTransCoefPtr (realnum *ptr)
void resetCoarseTransCoef ()

Data Fields

long int nflux
long int nupper
realnum emm
realnum egamry
realnum FluxFaint
double * anu
double * AnuOrg
realnumwidflx
long int * line_count
realnumOccNumbBremsCont
realnumOccNumbContEmitOut
realnumanulog
realnumanusqr
realnumanu2
realnumanu3
realnum ** flux
realnumflux_isotropic
realnumflux_beam_time
realnumflux_beam_const
realnumflux_accum
realnumExtinguishFactor
realnum ExtinguishLeakage
realnum ExtinguishColumnDensity
realnum ExtinguishLowEnergyLimit
realnum ExtinguishConvertColDen2OptDepth
realnum ExtinguishEnergyPowerLow
bool lgMustBlockHIon
bool lgBlockHIon
bool lgDoLineTrans
bool lgOpacityReevaluate
bool lgCMB_set
bool lgIonizReevaluate
bool lgMeshSetUp
realnumconvoc
realnumOccNumbIncidCont
realnumOccNumbDiffCont
double * ContBoltz
realnum ** ConEmitLocal
realnum ** ConSourceFcnLocal
realnum ** ConEmitReflec
realnum ** ConEmitOut
realnumConInterOut
realnum ** ConRefIncid
double * SummedCon
realnumSummedDif
realnumSummedOcc
realnumSummedDifSave
realnumConOTS_local_photons
realnumConOTS_local_OTS_rate
realnumDiffuseEscape
realnumTotDiff2Pht
realnumotslin
realnumotscon
realnum ** otssav
realnum ** outlin
realnumoutlin_noplot
realnumDiffuseLineEmission
realnum ** reflin
realnum ** flux_total_incident
realnumflux_beam_const_save
realnumflux_time_beam_save
realnumflux_isotropic_save
realnum time_continuum_scale
realnum DiffPumpOn
char ** chLineLabel
char ** chContLabel
realnum ** gff
bool lgCompileGauntFF
char chDffTrns [4]
bool lgOutOnly
long int ipEnergyBremsThin
realnum EnergyBremsThin
long int ipMaxBolt
bool lgInducProcess
double * comup
double * comdn
long int ipB_filter
long int ipV_filter
long int ipG0_TH85_lo
long int ipG0_TH85_hi
long int ipG0_DB96_lo
long int ipG0_DB96_hi
long int ipG0_spec_lo
long int ipG0_spec_hi
long int ip1000A
double extin_mag_B_point
double extin_mag_V_point
double extin_mag_B_extended
double extin_mag_V_extended
double opac_mag_B_point
double opac_mag_V_point
double opac_mag_B_extended
double opac_mag_V_extended
realnumcsigh
realnumcsigc
double comtot
double cmheat
double cmcool
double cinrat
bool lgComptonOn
bool lgComUndr
double totpow [LIMSPC]
double slope [LIMSPC]
double cutoff [LIMSPC][3]
double spfac [LIMSPC]
bool lgTimeVary [LIMSPC]
bool lgBeamed [LIMSPC]
realnum OpticalDepthScaleFactor [LIMSPC]
Illuminate::IlluminationType Illumination [LIMSPC]
long int nShape
long int ipSpec
vector< EnergytNu [LIMSPC]
vector< realnumtslop [LIMSPC]
vector< realnumtFluxLog [LIMSPC]
long ncont [LIMSPC]
double RSFCheck [LIMSPC]
bool lgContMalloc [LIMSPC]
double range [LIMSPC][2]
char chSpNorm [LIMSPC][5]
char chRSpec [LIMSPC][5]
char chSpType [LIMSPC][6]
realnum qhtot
realnum qhe
realnum qheii
realnum qbal
realnum qrad
realnum qtot
realnum uh
realnum uheii
bool lgUSphON
realnum rstrom
bool lgHabing
long int fine_opac_nelem
long int fine_opac_nresolv
realnum fine_opac_velocity_width
bool trans_coef_total_stale
long int * ipnt_coarse_2_fine
realnum fine_ener_lo
realnum fine_ener_hi
long nfine
long nfine_malloc
double fine_resol
realnumfine_opac_zone
realnumfine_opt_depth
realnumfine_anu
long int ipFineConVelShift
bool lgOpacityFine
bool lgSaveOpacityFine
bool lgLyaOTS
bool lgHeIIOTS
bool lgKillOutLine
bool lgKillOutCont
bool lgKillOTSLine
bool lgPlasNu
realnum plsfrq
realnum plsfrqmax
long int nZonePlsFrqEval
long int ipPlasma
long int ipPlasmax
bool lgMMok
bool lgHPhtOK
bool lgXRayOK
bool lgGamrOK
realnum EnerGammaRay
long int ipEnerGammaRay
bool lgHionRad
realnum occmax
realnum occmnu
realnum tbrmax
realnum tbrmnu
realnum tbr4nu
realnum occ1nu
bool lgOcc1Hi
realnum EnergyIncidCont
realnum EnergyDiffCont

Private Attributes

realnumtrans_coef_total

Detailed Description

Definition at line 33 of file rfield.h.


Constructor & Destructor Documentation

t_rfield::t_rfield (  )  [inline]

Member Function Documentation

const realnum * t_rfield::getCoarseTransCoef (  ) 

Definition at line 10 of file rfield.cpp.

References fine_opt_depth, ipnt_coarse_2_fine, t_opac::lgScatON, nflux, opac, sexp(), trans_coef_total, and trans_coef_total_stale.

Referenced by cdSPEC2(), SaveDo(), and sum_radiation().

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void t_rfield::resetCoarseTransCoef (  )  [inline]

Definition at line 512 of file rfield.h.

References nupper, trans_coef_total, and trans_coef_total_stale.

Referenced by ContCreateMesh(), IterRestart(), and RT_OTS_Zero().

void t_rfield::setCoarseTransCoefPtr ( realnum ptr  )  [inline]

Definition at line 508 of file rfield.h.

References trans_coef_total.

Referenced by rfield_opac_malloc().


Field Documentation

double* t_rfield::anu

Definition at line 77 of file rfield.h.

Referenced by ContSetIntensity(), PlanckIntegral(), and rfield_opac_malloc().

these are log, sqrt, square, and cube of anu array

Definition at line 77 of file rfield.h.

Referenced by ContSetIntensity(), pltcon(), pltopc(), rfield_opac_malloc(), and tfidle().

Definition at line 77 of file rfield.h.

Referenced by ContCreateMesh(), ContCreatePointers(), OpacityCreateAll(), and rfield_opac_malloc().

string identifying the first continuum edge that occurred at this energy

Definition at line 223 of file rfield.h.

Referenced by AGN_Hemis(), ContCreatePointers(), ContNegative(), ContSetIntensity(), GammaPrt(), ipContEnergy(), rfield_opac_malloc(), RT_continuum(), RT_OTS_ChkSum(), RT_OTS_PrtRate(), save_opacity(), and SaveDo().

method for transferring diffuse continuum either 'ots' or 'oux' where x is n for which

Definition at line 236 of file rfield.h.

Referenced by InitDefaultsPreparse(), ParseDiffuse(), and RT_recom_effic().

string identifying the first line that occurred at this energy

Definition at line 220 of file rfield.h.

Referenced by ContCreatePointers(), ContNegative(), ContSetIntensity(), FeIIPoint(), FindStrongestLineLabels(), GammaPrt(), ipLineEnergy(), rfield_opac_malloc(), RT_continuum(), RT_OTS_ChkSum(), RT_OTS_PrtRate(), and SaveDo().

chSpNorm says how spectrum was normalized - intensity or luminosity case chRSpec says whether per unit area or tot 4 pi

Definition at line 351 of file rfield.h.

Referenced by conorm(), ParseAbsMag(), ParseBackgrd(), ParseBlackbody(), ParseCMB(), ParseCoronal(), ParseEnergy(), ParseF_nu(), ParseIntensity(), ParseIonPar(), ParseLuminosity(), ParsePhi(), ParseQH(), ParseRatio(), and ParseTable().

Definition at line 291 of file rfield.h.

Referenced by highen(), InitSimPostparse(), and PrtComment().

Definition at line 291 of file rfield.h.

Referenced by CoolEvaluate(), highen(), InitSimPostparse(), PrtHeader(), and PrtZone().

Definition at line 291 of file rfield.h.

Referenced by highen(), lines(), lines_general(), PrtHeader(), and PrtZone().

double * t_rfield::comdn

Definition at line 255 of file rfield.h.

Referenced by highen(), rfield_opac_malloc(), and SaveDo().

Definition at line 291 of file rfield.h.

Referenced by InitSimPostparse(), IterStart(), lines(), and PrtComment().

double* t_rfield::comup

saves for the upward and downward Compton shifts

Definition at line 255 of file rfield.h.

Referenced by highen(), rfield_opac_malloc(), and SaveDo().

ConEmitLocal is local diffuse continuum, units photons cm-3 s-1 cell-1, for each zone, evaluated in RT_diffuse

Definition at line 149 of file rfield.h.

Referenced by AGN_Hemis(), ContCreateMesh(), lines_continuum(), pltcon(), RT_continuum(), RT_diffuse(), RT_iso_integrate_RRC(), and SaveDo().

outward diffuse emission continuum (not the interactive one), this is incremented in radinc because of interplay between absorption and emission - get the outward bremsstrahlung right photons cell-1 cm-2 s-1

Definition at line 161 of file rfield.h.

Referenced by cdSPEC(), cdSPEC2(), ContSetIntensity(), IterEnd(), IterRestart(), IterStart(), lines_continuum(), pltcon(), rfield_opac_malloc(), rfield_opac_zero(), RT_continuum(), SaveDo(), and sum_radiation().

the local photoionization rate corresponding to above photons

Definition at line 178 of file rfield.h.

Referenced by GammaPrt(), IterRestart(), IterStart(), rfield_opac_malloc(), rfield_opac_zero(), RT_OTS_ChkSum(), RT_OTS_Update(), and RT_OTS_Zero().

this will control array of locally destroyed continuum photons, zeroed and evaluated in RT_diffuse, currently only two-photon

Definition at line 178 of file rfield.h.

Referenced by IterRestart(), IterStart(), rfield_opac_malloc(), rfield_opac_zero(), RT_diffuse(), RT_OTS_Update(), and RT_OTS_Zero().

ConRefIncid is reflected portion of incident continuum

Definition at line 167 of file rfield.h.

Referenced by cdSPEC(), cdSPEC2(), ContSetIntensity(), IterEnd(), IterRestart(), lines_continuum(), rfield_opac_malloc(), rfield_opac_zero(), RT_continuum(), SaveDo(), and sum_radiation().

the local source function - diffuse emission, photons cell-1 cm-2 s-1

Definition at line 152 of file rfield.h.

Referenced by ContCreateMesh(), RT_diffuse(), and SaveDo().

convoc is the conversion factor from rfield to OccNumbIncidCont

Definition at line 134 of file rfield.h.

Referenced by ContSetIntensity(), IterRestart(), ptrcer(), rfield_opac_malloc(), rfield_opac_zero(), RT_continuum(), RT_diffuse(), RT_OTS_Update(), and RT_OTS_Zero().

Definition at line 288 of file rfield.h.

Referenced by ContCreateMesh(), ContSetIntensity(), highen(), PrtHeader(), and rfield_opac_malloc().

coefficients for fitting Tarter expressions for Compton heating and cooling, over full energy range of code

Definition at line 288 of file rfield.h.

Referenced by ContCreateMesh(), ContSetIntensity(), highen(), PrtHeader(), and rfield_opac_malloc().

this is zero or one depending whether pumping by diffuse fields is turned on (1) or turned off (0)

Definition at line 217 of file rfield.h.

Referenced by ParseDont(), and zero().

computed in rt_diffuse.cpp, escaping continuum emission added to beam in radius_increment

Definition at line 184 of file rfield.h.

Referenced by IterRestart(), IterStart(), rfield_opac_malloc(), RT_continuum(), RT_diffuse(), and RT_iso_integrate_RRC().

local diffuse line emission, photons cm-3 s-1

Definition at line 203 of file rfield.h.

Referenced by lines_continuum(), outline_base_bin(), rfield_opac_malloc(), RT_diffuse(), and SaveDo().

lowest energy counted as gamma rays, 100 keV

Definition at line 465 of file rfield.h.

Referenced by ContCreatePointers(), InitSimPostparse(), and ParseInterp().

Definition at line 246 of file rfield.h.

Referenced by InitSimPostparse(), IterRestart(), IterStart(), PrtComment(), PrtFinal(), and tauff().

Definition at line 484 of file rfield.h.

Referenced by lgCheckMonitors(), PrtZone(), and RT_continuum().

intensity [erg cm-2 s-1] in incident and diffuse continua in current zone

Definition at line 484 of file rfield.h.

Referenced by lgCheckMonitors(), PrtZone(), and RT_continuum().

extinction in magnitudes at B and V filters for a resolved source, this does discount forward scattering, so is appropriate for a resolved source

Definition at line 281 of file rfield.h.

Referenced by InitSimPostparse(), IterRestart(), IterStart(), and radius_increment().

extinction in magnitudes at B and V filters for a point source, this does not discount forward scattering

Definition at line 277 of file rfield.h.

Referenced by InitSimPostparse(), IterRestart(), IterStart(), PrtFinal(), and radius_increment().

Definition at line 99 of file rfield.h.

Referenced by extin(), InitDefaultsPreparse(), and ParseExtinguish().

the constant that multiplies the column density to get optical depth

Definition at line 99 of file rfield.h.

Referenced by extin(), and t_rfield().

the power on the energy

Definition at line 99 of file rfield.h.

Referenced by extin(), and t_rfield().

extinction factor set with extinguish command

Definition at line 98 of file rfield.h.

Referenced by extin(), IncidentContinuumHere(), and rfield_opac_malloc().

Definition at line 99 of file rfield.h.

Referenced by extin(), InitDefaultsPreparse(), and ParseExtinguish().

Definition at line 99 of file rfield.h.

Referenced by extin(), InitDefaultsPreparse(), and ParseExtinguish().

energies at center of each bin for fine continuum

Definition at line 412 of file rfield.h.

Referenced by ContCreateMesh(), ContCreatePointers(), ContSetIntensity(), rfield_opac_malloc(), save_opacity(), and SaveDo().

Definition at line 400 of file rfield.h.

Referenced by ContCreateMesh(), ipFineCont(), ParseSet(), and rfield_opac_malloc().

low and high bounds of fine continuum - set by need to include all resonance lines

Definition at line 400 of file rfield.h.

Referenced by ContCreateMesh(), ipFineCont(), ParseSet(), and rfield_opac_malloc().

heaviest element to be considered - default is iron - the fine opacity array resolution depends on heaviest element and lowest temperature

Definition at line 380 of file rfield.h.

Referenced by ParseSet(), rfield_opac_malloc(), and zero().

number of resolution elements over width of this element, default is 4

Definition at line 383 of file rfield.h.

Referenced by ParseSet(), rfield_opac_malloc(), and zero().

number of cm/s of each cell in fine mesh

Definition at line 386 of file rfield.h.

Referenced by rfield_opac_malloc(), RT_line_all(), and RT_line_fine_opacity().

total optical depth array for fine continuum

Definition at line 410 of file rfield.h.

Referenced by getCoarseTransCoef(), rfield_opac_malloc(), rfield_opac_zero(), RT_continuum(), RT_tau_reset(), and SaveDo().

the dimensionless resolution of the fine continuum - dE/E

Definition at line 406 of file rfield.h.

Referenced by ipFineCont(), and rfield_opac_malloc().

the accumulated flux, sum from this energy to infinity

Definition at line 95 of file rfield.h.

Referenced by diatomics::H2_X_sink_and_source(), rfield_opac_malloc(), rfield_opac_zero(), and RT_OTS_Update().

Definition at line 210 of file rfield.h.

Referenced by ContSetIntensity(), IterRestart(), rfield_opac_malloc(), and rfield_opac_zero().

this is the variable and constant parts of the above

Definition at line 92 of file rfield.h.

Referenced by ContSetIntensity(), extin(), IterRestart(), rfield_opac_malloc(), RT_continuum(), RT_diffuse(), ZoneEnd(), and ZoneStart().

this is the isotropic part of the constant continuum

Definition at line 89 of file rfield.h.

Referenced by ContSetIntensity(), extin(), IterRestart(), rfield_opac_malloc(), RT_continuum(), RT_diffuse(), ZoneEnd(), and ZoneStart().

Definition at line 210 of file rfield.h.

Referenced by ContSetIntensity(), IterRestart(), rfield_opac_malloc(), and rfield_opac_zero().

Definition at line 210 of file rfield.h.

Referenced by ContSetIntensity(), IterRestart(), rfield_opac_malloc(), and rfield_opac_zero().

save incident continuum for later iterations

Definition at line 209 of file rfield.h.

Referenced by cdSPEC(), cdSPEC2(), ContSetIntensity(), IterEnd(), pltcon(), rfield_opac_malloc(), rfield_opac_zero(), RT_continuum(), and SaveDo().

faintest high energy flux to consider, set with set flxfnt command

Definition at line 55 of file rfield.h.

Referenced by ContSetIntensity(), InitDefaultsPreparse(), and ParseSet().

free free gaunt factor for all charges First index is EFFECTIVE CHARGE!

Definition at line 227 of file rfield.h.

Referenced by CoolEvaluate(), OpacityAddTotal(), rfield_opac_malloc(), RT_diffuse(), and tfidle().

this is the wavelength where Bertoldi & Draine estimate the Habing field

Definition at line 273 of file rfield.h.

Referenced by ContCreatePointers(), and mole_h_reactions().

array indices for centers of B and V filters

Definition at line 259 of file rfield.h.

Referenced by ContCreatePointers(), and radius_increment().

Definition at line 466 of file rfield.h.

Referenced by ContCreatePointers(), and ContSetIntensity().

ipEnergyBremsThin is index for lowest energy thin to ff abs and plasma frequency EnergyBremsThin is energy there, Ryd

Definition at line 245 of file rfield.h.

Referenced by ContRate(), CoolEvaluate(), GrainRateDr(), InitSimPostparse(), IterRestart(), IterStart(), RT_diffuse(), RT_OTS_ChkSum(), RT_OTS_Update(), and tauff().

shift in fine continuum rest frame scale due to velocity gradient, rest frame is velocity of first zone, positive means that first zone is blue shifted relative to current zone. This is a decelerating flow. Evaluated in RT_line_all

Definition at line 418 of file rfield.h.

Referenced by PressureRadiationLine(), rfield_opac_malloc(), RT_line_all(), RT_line_fine_opacity(), and RT_line_one_tauinc().

Definition at line 267 of file rfield.h.

Referenced by ContCreatePointers(), ContSetIntensity(), and mole_h_reactions().

these are the lower and upper bounds for the G0 radiation field used by Tielens & Hollenbach in their PDR work

Definition at line 267 of file rfield.h.

Referenced by ContCreatePointers(), ContSetIntensity(), and mole_h_reactions().

Definition at line 270 of file rfield.h.

Referenced by ContCreatePointers(), and mole_h_reactions().

these are the lower and upper bounds for the special G0 radiation field

Definition at line 270 of file rfield.h.

Referenced by ContCreatePointers(), and mole_h_reactions().

Definition at line 263 of file rfield.h.

Referenced by ContCreatePointers(), and mole_h_reactions().

these are the lower and upper bounds for the G0 radiation field used by Tielens & Hollenbach in their PDR work

Definition at line 263 of file rfield.h.

Referenced by ContCreatePointers(), and mole_h_reactions().

index of highest cell with positive Boltzmann factor

Definition at line 249 of file rfield.h.

Referenced by CoolEvaluate(), RT_diffuse(), SaveDo(), and tfidle().

and array indices for lower and upper bounds of each coarse continuum mapped onto the fine continuum 0 (false) if fine continuum does not extend to these cells

Definition at line 397 of file rfield.h.

Referenced by ContCreateMesh(), getCoarseTransCoef(), rfield_opac_malloc(), and RT_recom_effic().

pointer to current plasma frequency

Definition at line 453 of file rfield.h.

Referenced by ContRate(), ContSetIntensity(), EdenChange(), RT_continuum(), RT_diffuse(), and RT_OTS_Update().

pointer to largest plasma freq encountered

Definition at line 453 of file rfield.h.

Referenced by ContSetIntensity().

long int t_rfield::ipSpec

Definition at line 322 of file rfield.h.

Referenced by conorm(), ContSetIntensity(), ffun(), ffun1(), InitDefaultsPreparse(), and qintr().

Definition at line 259 of file rfield.h.

Referenced by ContCreatePointers(), radius_increment(), and SaveDo().

Definition at line 114 of file rfield.h.

Referenced by ParseCommands(), ParseExtinguish(), and zero().

this flag says that CMB has been set

Definition at line 124 of file rfield.h.

Referenced by InitDefaultsPreparse(), ParseBackgrd(), ParseCMB(), and PrtComment().

flag which, if set to false, causes gauntff.dat, if it exists, to be read in, or if true, causes the file gauntff.dat to be created. rfield.gff[][] is filled by interpolation on the values in this file

Definition at line 232 of file rfield.h.

Referenced by FillGFF(), ParseCompile(), and zero().

Definition at line 295 of file rfield.h.

Referenced by cmshft(), highen(), InitDefaultsPreparse(), and ParseDont().

set true if Compton cooling underflows

Definition at line 298 of file rfield.h.

Referenced by PrtComment(), and PrtHeader().

this flag is set true if we malloced out the three previous arrays - these can be returned once the continuum is generated

Definition at line 343 of file rfield.h.

Referenced by conorm(), InitDefaultsPreparse(), InterpolateGridCoStar(), InterpolateRectGrid(), ParseInterp(), ParseTable(), and t_rfield().

option to not do line transfer, set false with no line transfer command

Definition at line 117 of file rfield.h.

Referenced by outline_base(), ParseCommands(), ParseDont(), PresTotCurrent(), RT_line_all(), RT_line_one(), and zero().

Definition at line 459 of file rfield.h.

Referenced by InitDefaultsPreparse(), ParseInterp(), and PrtComment().

flag set if incident radiation field less than 10x the Habing ISM field

Definition at line 376 of file rfield.h.

Referenced by ContSetIntensity(), PrtComment(), and zero().

flag saying whether to include HeII Lya and rec cont ots in the radiation field - - usually true, set false with no HeII ots command

Definition at line 431 of file rfield.h.

Referenced by ParseDont(), RT_OTS(), and zero().

lgHionRad set to .true. if no hydrogen ionizing radiation

Definition at line 469 of file rfield.h.

Referenced by ContSetIntensity(), and PrtComment().

Definition at line 459 of file rfield.h.

Referenced by InitDefaultsPreparse(), ParseInterp(), and PrtComment().

turn off continuum pumping, set with 'no induced processes' command

Definition at line 252 of file rfield.h.

Referenced by atom_oi_calc(), DrvContPump(), GammaBn(), diatomics::H2_LevelPops(), InitDefaultsPreparse(), iso_update_rates(), OpacityAdd1SubshellInduc(), ParseDont(), RT_diffuse(), and RT_line_pumping().

says whether to constantly reevaluate ionization, normally true, set false with no ionization reevaluate command

Definition at line 128 of file rfield.h.

Referenced by ConvBase(), ParseCommands(), ParseDont(), and zero().

flag saying whether to kill ots lines

Definition at line 440 of file rfield.h.

Referenced by ParseDont(), RT_OTS_Update(), and zero().

flag saying whether to kill outward only continuum

Definition at line 437 of file rfield.h.

Referenced by ParseDont(), RT_diffuse(), and zero().

flag saying whether to kill outward only lines

Definition at line 434 of file rfield.h.

Referenced by ParseDont(), RT_diffuse(), and zero().

flag saying whether to include H1 Lya ots in the radiation field - usually true, set false with no Lya ots command

Definition at line 427 of file rfield.h.

Referenced by ParseDont(), RT_OTS(), and zero().

says whether the frequency mesh is defined

Definition at line 131 of file rfield.h.

Referenced by ContSetIntensity(), InitCoreload(), and tfidle().

these are series of flags that say whether different parts of the continuum where entered ok

Definition at line 459 of file rfield.h.

Referenced by InitDefaultsPreparse(), ParseInterp(), and PrtComment().

this is set true is one of incident continua is expected to have all H-ionizing radiation blocked. That is done separately with the extinguish command.

Definition at line 110 of file rfield.h.

Referenced by ParseCommands(), ParseTable(), and zero().

flag saying that occupation number at 1 Ryd > 1

Definition at line 480 of file rfield.h.

Referenced by ContSetIntensity(), and PrtComment().

option to turn off fine opacities with no fine opacity command

Definition at line 421 of file rfield.h.

Referenced by InitDefaultsPreparse(), ParseCommands(), ParseDont(), PressureRadiationLine(), RT_continuum(), RT_line_fine_opacity(), RT_line_one_tauinc(), and RT_recom_effic().

says whether to constantly reevaluate opacities, normally true, set false with no opacity reevaluate command

Definition at line 121 of file rfield.h.

Referenced by ConvBase(), ParseCommands(), ParseDont(), and zero().

another flag, true if outward only - used to multiply the ConInterOut continuum for creating the interactive continuum - when false, no outward only, this is not added

Definition at line 241 of file rfield.h.

Referenced by GammaBn(), GammaK(), GammaPrt(), InitDefaultsPreparse(), ParseDiffuse(), RT_OTS_ChkSum(), and RT_OTS_Update().

following deal with plasma frequency, which enters the continuum array for even moderate densities due to very low frequencies considered set true if plasma freq enters energy array

Definition at line 445 of file rfield.h.

Referenced by ContSetIntensity(), EdenChange(), and PrtComment().

says that fine optical depths will be saved, so save them

Definition at line 423 of file rfield.h.

Referenced by ParseSave(), and zero().

lgUSphON flag set when we hit Stromgren radius in spherical geometry

Definition at line 370 of file rfield.h.

Referenced by dense_fabden(), InitSimPostparse(), IterRestart(), optimize_func(), PrtFinal(), and radius_increment().

Definition at line 459 of file rfield.h.

Referenced by InitDefaultsPreparse(), ParseInterp(), and PrtComment().

used to keep track of number of lines per freq interval

Definition at line 68 of file rfield.h.

Referenced by ipLineEnergy(), rfield_opac_malloc(), RT_OTS_PrtRate(), and SaveDo().

Definition at line 335 of file rfield.h.

Referenced by ParseInterp(), ParseTable(), and ReadTable().

the number of fine continuum cells actually used in this continuum

Definition at line 402 of file rfield.h.

Referenced by ContSetIntensity(), PressureRadiationLine(), rfield_opac_malloc(), RT_continuum(), RT_line_all(), RT_line_fine_opacity(), RT_line_one_tauinc(), RT_recom_effic(), RT_tau_reset(), save_opacity(), and SaveDo().

the number of fine continuum cells malloced - will be several million

Definition at line 404 of file rfield.h.

Referenced by ContCreateMesh(), ContSetIntensity(), ipFineCont(), rfield_opac_malloc(), and rfield_opac_zero().

long int t_rfield::nflux

================================================================================= the following define the continuum energy scale and its limits nflux is number of continuum points needed to get to high energy end of this continuum. this is initially set to nupper in ContCreatePointers, and then trimmed down in ContSetIntensity. It is finally reset in ConvInitSolution, to make sure continuum includes all possible line and continuum emission produced by the code

Definition at line 43 of file rfield.h.

Referenced by AGN_Hemis(), cdSPEC(), cdSPEC2(), cmshft(), ContCreateMesh(), ContNegative(), ContRate(), ContSetIntensity(), ConvInitSolution(), CoolEvaluate(), FindStrongestLineLabels(), GammaBn(), GammaK(), GammaPrt(), getCoarseTransCoef(), GetDissociationRateCoeff(), diatomics::GetHeatRate(), GrainDrift(), GrainElecEmis1(), GrainMakeDiffuse(), GrainsInit(), GrainTemperature(), GrainUpdateRadius2(), highen(), IncidentContinuumHere(), ion_photo(), ion_trim(), ipoint(), iso_photo(), IterEnd(), lincom(), OpacityAdd1Element(), OpacityAdd1Subshell(), OpacityAdd1SubshellInduc(), OpacityAddTotal(), OpacityCreateAll(), outsum(), PE_init(), pltcon(), pltopc(), pnegopc(), PresTotCurrent(), PrtComment(), PrtFinal(), PrtHeader(), ptrcer(), qheat_init(), radius_first(), RT_continuum(), RT_DestProb(), RT_diffuse(), RT_iso_integrate_RRC(), RT_OTS(), RT_OTS_AddCont(), RT_OTS_AddLine(), RT_OTS_ChkSum(), RT_OTS_Update(), RT_OTS_Zero(), RT_recom_effic(), SanityCheckBegin(), save_opacity(), SaveDo(), saveFITSfile(), SaveNewContinuum(), sum_radiation(), sumcon(), tauff(), tfidle(), UpdatePot(), UpdatePot1(), ZoneEnd(), and ZoneStart().

long int t_rfield::nShape

nShape is SED shape index number, this must equal the number of field intensities that are specified ipSpec is radiation field source number

Definition at line 322 of file rfield.h.

Referenced by conorm(), ContSetIntensity(), DynaIterStart(), ffun(), ffun1(), InitGrid(), InterpolateGridCoStar(), InterpolateRectGrid(), ParseAgn(), ParseBackgrd(), ParseBlackbody(), ParseBremsstrahlung(), ParseCMB(), ParseCommands(), ParseCoronal(), ParseIlluminate(), ParseInterp(), ParseLaser(), ParsePowerlawContinuum(), ParseTable(), and ReadTable().

long int t_rfield::nupper

number of frequency cells needed to get full energy resolution of code

Definition at line 46 of file rfield.h.

Referenced by AtlasInterpolate(), diatomics::CalcPhotoionizationRate(), cdSPEC(), cdSPEC2(), ChckFill(), ContCreateMesh(), ContCreatePointers(), ContSetIntensity(), CoolEvaluate(), CoStarInterpolate(), emergent_line(), extin(), ffun1(), fiddle(), fill(), GetBins(), GetModel(), GrainsInit(), GrainUpdateRadius2(), GridGatherInCloudy(), GridInterpolate(), InitGrid(), InitSimPostparse(), InterpolateGridCoStar(), InterpolateModel(), InterpolateModelCoStar(), InterpolateRectGrid(), ipoint(), IterRestart(), IterStart(), Kurucz79Interpolate(), lgCompileAtmosphere(), lgCompileAtmosphereCoStar(), lgValidModel(), mie_calc_ial(), mie_write_opc(), MihalasInterpolate(), OpacityAddTotal(), diatomics::OpacityCreate(), OpacityCreate1Element(), OpacityCreateAll(), OpacityZero(), OpacityZeroOld(), ParseTable(), PlanckIntegral(), pltcon(), pltopc(), punchFITS_EnergyData(), qheat(), qintr(), radius_next(), RauchInterpolateCOWD(), RauchInterpolateHCa(), RauchInterpolateHelium(), RauchInterpolateHNi(), RauchInterpolateHpHe(), RauchInterpolateHydr(), RauchInterpolatePG1159(), RebinAtmosphere(), resetCoarseTransCoef(), rfield_opac_malloc(), RT_diffuse(), RT_OTS_AddCont(), RT_OTS_PrtRate(), RT_recom_effic(), RT_tau_init(), RT_tau_reset(), SanityCheckBegin(), save_opacity(), SaveDo(), state_get_put(), tfidle(), TlustyInterpolate(), UpdatePot(), UpdatePot1(), ValidateGrid(), WernerInterpolate(), and WMBASICInterpolate().

Definition at line 451 of file rfield.h.

Referenced by EdenChange(), and t_rfield().

Definition at line 472 of file rfield.h.

Referenced by ContSetIntensity(), and PrtComment().

these store photon occupation numbers at various energies in the continuum

Definition at line 472 of file rfield.h.

Referenced by ContSetIntensity(), and PrtComment().

Definition at line 472 of file rfield.h.

Referenced by ContSetIntensity(), and PrtComment().

bremsstrahlung occupation number - only used for induced two photon

Definition at line 71 of file rfield.h.

Referenced by IterRestart(), rfield_opac_malloc(), rfield_opac_zero(), and RT_OTS_Update().

outward emitted continuum

Definition at line 74 of file rfield.h.

Referenced by iso_ionize_recombine(), IterRestart(), rfield_opac_malloc(), rfield_opac_zero(), RT_continuum(), and RT_line_pumping().

OccNumbDiffCont is the continuum occupation number, for local diffuse continuum

Definition at line 141 of file rfield.h.

Referenced by IterRestart(), rfield_opac_malloc(), rfield_opac_zero(), RT_continuum(), and RT_diffuse().

OccNumbIncidCont is the continuum occupation number for the attenuated incident ONLY

Definition at line 138 of file rfield.h.

Referenced by ContSetIntensity(), highen(), iso_ionize_recombine(), IterRestart(), PrtHeader(), rfield_opac_malloc(), RT_continuum(), and RT_line_pumping().

Definition at line 284 of file rfield.h.

Referenced by radius_increment().

these are total opacities at these wavelengths, used to stop at exact Av

Definition at line 284 of file rfield.h.

Referenced by radius_increment().

Definition at line 284 of file rfield.h.

Referenced by radius_increment(), and radius_next().

Definition at line 284 of file rfield.h.

Referenced by radius_increment(), and radius_next().

1 / cos( illumination angle, angle measured from normal, default is angle=zero, normal illumination, DirectCos = 1

Definition at line 314 of file rfield.h.

Referenced by ContSetIntensity(), InitDefaultsPreparse(), and ParseIlluminate().

otsline and otscon - local ots fields for line and continua outlin outward line fields the local ots line rates

Definition at line 193 of file rfield.h.

Referenced by ContNegative(), CoolCalc(), eden_sum(), GammaBn(), GammaK(), GammaPrt(), GrainTemperature(), IterRestart(), IterStart(), OpacityAddTotal(), pltcon(), rfield_opac_malloc(), rfield_opac_zero(), RT_continuum(), RT_diffuse(), RT_OTS(), RT_OTS_AddLine(), RT_OTS_ChkSum(), RT_OTS_PrtRate(), RT_OTS_Update(), RT_OTS_Zero(), and SaveDo().

Definition at line 193 of file rfield.h.

Referenced by IterRestart(), IterStart(), and rfield_opac_malloc().

plasma frequency for current position in slab

Definition at line 447 of file rfield.h.

Referenced by atom_level3(), ContSetIntensity(), EdenChange(), TransitionProxy::outline(), PressureRadiationLine(), RT_line_one(), RT_line_one_tauinc(), and tauff().

store highest energy plasma frequency encountered

Definition at line 447 of file rfield.h.

Referenced by ContSetIntensity(), EdenChange(), and PrtComment().

Definition at line 356 of file rfield.h.

Referenced by ContSetIntensity(), PrtHeader(), and radius_first().

Definition at line 356 of file rfield.h.

Referenced by ContSetIntensity(), and PrtHeader().

Definition at line 356 of file rfield.h.

Referenced by ContSetIntensity(), and PrtHeader().

these are total numbers of photons over various energy ranges

Definition at line 356 of file rfield.h.

Referenced by ContSetIntensity(), lines_hydro(), PrtFinal(), PrtHeader(), radius_first(), and RT_tau_init().

Definition at line 356 of file rfield.h.

Referenced by ContSetIntensity().

Definition at line 356 of file rfield.h.

Referenced by ContSetIntensity(), and IterStart().

double t_rfield::range[LIMSPC][2]

energy range over which the intensity is integrated for normalizing each continuum source that contributes to the total source

Definition at line 347 of file rfield.h.

Referenced by conorm(), InitDefaultsPreparse(), ParseAbsMag(), ParseBackgrd(), ParseBlackbody(), ParseCMB(), ParseEnergy(), ParseF_nu(), ParseIntensity(), ParseLuminosity(), ParsePhi(), ParseQH(), ParseRangeOption(), ParseRatio(), and ParseTable().

used to store a check on the continuum mesh resolution scale factor this is used for the output of the SAVE TRANSMITTED CONTINUUM command

Definition at line 339 of file rfield.h.

Referenced by conorm(), InitDefaultsPreparse(), InitGrid(), and ReadTable().

the Stromgren radius var set to get u spherical

Definition at line 372 of file rfield.h.

Referenced by dense_fabden(), optimize_func(), PrtFinal(), and radius_increment().

Definition at line 300 of file rfield.h.

Referenced by conorm(), and ffun().

these are energy-by-energy sums of various arrays, used to save time in evaluating rate integrals

Definition at line 171 of file rfield.h.

Referenced by ContNegative(), GammaBn(), GammaK(), GammaPrt(), GrainElecEmis1(), GrainTemperature(), highen(), IterRestart(), qheat_init(), rfield_opac_malloc(), rfield_opac_zero(), RT_continuum(), RT_OTS_ChkSum(), RT_OTS_Update(), RT_OTS_Zero(), ZoneEnd(), and ZoneStart().

Definition at line 174 of file rfield.h.

Referenced by IterRestart(), IterStart(), and rfield_opac_malloc().

Definition at line 472 of file rfield.h.

Referenced by ContSetIntensity(), and PrtComment().

Definition at line 472 of file rfield.h.

Referenced by ContSetIntensity(), and PrtComment().

Definition at line 472 of file rfield.h.

Referenced by ContSetIntensity(), and PrtComment().

Definition at line 333 of file rfield.h.

Referenced by ffun1(), InitDefaultsPreparse(), ParseInterp(), ParseTable(), and ReadTable().

==1 for time steady, when continuum varies with time, is scale factor

Definition at line 213 of file rfield.h.

Referenced by DynaIterEnd(), DynaIterStart(), DynaPunchTimeDep(), IterRestart(), and zero().

these are used for interpolate and table commands, all have two indices, continuum and frequency tNuRyd is the linear energy Rydberg of continuum point must be explicit arrays again so that table commands will work before continuum defined.

Definition at line 330 of file rfield.h.

Referenced by conorm(), ffun1(), InitDefaultsPreparse(), InterpolateGridCoStar(), InterpolateRectGrid(), ParseInterp(), ParseTable(), and ReadTable().

saves total two photon continuum for debugging, set in RT_diffuse

Definition at line 187 of file rfield.h.

Referenced by rfield_opac_malloc(), RT_diffuse(), and SaveDo().

these are TOTAL transmission coefficients for fine opacity degraded to coarse continuum

Definition at line 390 of file rfield.h.

Referenced by getCoarseTransCoef(), resetCoarseTransCoef(), SaveDo(), and setCoarseTransCoefPtr().

Definition at line 393 of file rfield.h.

Referenced by getCoarseTransCoef(), resetCoarseTransCoef(), and RT_continuum().

this is the log of f_nu of continuum point

Definition at line 332 of file rfield.h.

Referenced by conorm(), ffun1(), InitDefaultsPreparse(), InterpolateGridCoStar(), InterpolateRectGrid(), ParseInterp(), and ParseTable().

hydrogen ionization parameter

Definition at line 364 of file rfield.h.

Referenced by ContSetIntensity(), PrtComment(), PrtFinal(), PrtHeader(), and radius_first().

helium ion ionization parameter

Definition at line 367 of file rfield.h.

Referenced by ContSetIntensity(), PrtFinal(), and PrtHeader().


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