spectral_propmatAddPredefined

Workspace.spectral_propmatAddPredefined(self, spectral_propmat: PropmatVector = self.spectral_propmat, spectral_propmat_jac: PropmatMatrix = self.spectral_propmat_jac, abs_predef_data: PredefinedModelData = self.abs_predef_data, select_species: SpeciesEnum = self.select_species, jac_targets: JacobianTargets = self.jac_targets, freq_grid: AscendingGrid = self.freq_grid, atm_point: AtmPoint = self.atm_point) → None

Adds all of the predefined models in abs_species to the spectral_propmat

Only supports temperature and wind speed derivatives

Available models

Model name

Description and limitations

Reference(s)

H2O-ForeignContCKDMT320

Foreign continua.
Use water cutoff of 25 cm-1 and H2O-SelfContCKDMT320.

[2]

H2O-ForeignContCKDMT350

MT CKD 3.5 foreign continua.
Use water cutoff of 25 cm-1 and H2O-SelfContCKDMT350.

[2]

H2O-ForeignContCKDMT400

MT CKD 4 foreign continua.
Use water cutoff of 25 cm-1 and H2O-SelfContCKDMT400.
Requires an external data source.

Mlawer et al. [24] and [2]

H2O-ForeignContCKDMT430

MT CKD 4.3 foreign continua.
Use water cutoff of 25 cm-1 and H2O-SelfContCKDMT430.
Requires an external data source.

Mlawer et al. [24] and [2]

H2O-ForeignContStandardType

Water microwave continua for foreign species.

Rosenkranz [35]

H2O-MPM89

Microwave water absorption model.

Liebe [17]

H2O-PWR2021

Microwave water absorption model
developed by P.W. Rosenkranz.

Rosenkranz [36].

H2O-PWR2022

Microwave water absorption model
developed by P.W. Rosenkranz.

Rosenkranz [36].

H2O-PWR98

Microwave water absorption model.

Rosenkranz [35]

H2O-SelfContCKDMT320

Self continua.
Use water cutoff of 25 cm-1 and H2O-ForeignContCKDMT320.

[2]

H2O-SelfContCKDMT350

MT CKD 3.5 self continua.
Use water cutoff of 25 cm-1 and H2O-ForeignContCKDMT350.

[2]

H2O-SelfContCKDMT400

MT CKD 4 self continua.
Use water cutoff of 25 cm-1 and H2O-ForeignContCKDMT400.
Requires an external data source.

Mlawer et al. [24] and [2]

H2O-SelfContCKDMT430

MT CKD 4.3 self continua.
Use water cutoff of 25 cm-1 and H2O-ForeignContCKDMT430.
Requires an external data source.

Mlawer et al. [24] and [2]

H2O-SelfContStandardType

Water microwave continua for self.

Rosenkranz [35]

CO2-CKDMT252

MT CKD absorption for CO2 version 2.52.

[2]

O2-CIAfunCKDMT100

CIA for oxygen from MT CKD.

[39] and [2]

O2-MPM2020

60 GHz and 118 GHz lines only.
Do not include the v 0 0 oxygen band manually.

Makarov et al. [19]

O2-MPM89

Oxygen microwave absorption model.

Liebe et al. [16]

O2-PWR2021

Oxygen microwave absorption model
developed by P.W. Rosenkranz.

Rosenkranz [35]

O2-PWR2022

Oxygen microwave absorption model
developed by P.W. Rosenkranz.

Rosenkranz [35]

O2-PWR98

Oxygen microwave absorption model.

Rosenkranz [34] and Liebe et al. [18] and
M.J. Schwartz, Ph.D. thesis, M.I.T. (1997) and
ROTHMAN et al. [37].

O2-SelfContStandardType

Microwave continua term.

Rosenkranz [34] and Liebe et al. [16]

O2-TRE05

Oxygen microwave absorption model.

Liebe et al. [16] and Tretyakov et al. [41]

O2-v0v0CKDMT100

CKD_MT 1.00 implementation of oxygen
collision-induced fundamental model.

[2] and [20] and Mlawer et al. [23]

O2-v1v0CKDMT100

MT CKD.

[2] and Mlawer et al. [23]

O2-visCKDMT252

MT CKD.

[2] and Greenblatt et al. [9]

N2-CIAfunCKDMT252

MT CKD.

[2] and Lafferty et al. [13]

N2-CIArotCKDMT252

MT CKD.

[2] and Borysow and Frommhold [5]

N2-SelfContMPM93

Microwave nitrogen absorption continua
from MPM93 model.

Liebe et al. [16]

N2-SelfContPWR2021

Microwave nitrogen absorption continua
developed by P.W. Rosenkranz.
This includes O2-N2 and O2-O2 CIA (only applicable to Earth).

Rosenkranz [35]

N2-SelfContStandardType

Microwave nitrogen absorption continua.

Rosenkranz [34]

liquidcloud-ELL07

Water droplet absorption.

Ellison [8]

Author: Richard Larsson

Parameters:
  • spectral_propmat (~pyarts3.arts.PropmatVector, optional) – This contains the fully polarized propagation matrix for the current path point. Defaults to self.spectral_propmat. [INOUT]

  • spectral_propmat_jac (~pyarts3.arts.PropmatMatrix, optional) – Partial derivative of the spectral_propmat with regards to jac_targets. Defaults to self.spectral_propmat_jac. [INOUT]

  • abs_predef_data (~pyarts3.arts.PredefinedModelData, optional) – This contains predefined model data. Defaults to self.abs_predef_data. [IN]

  • select_species (~pyarts3.arts.SpeciesEnum, optional) – Species selection. Defaults to self.select_species. [IN]

  • jac_targets (~pyarts3.arts.JacobianTargets, optional) – A list of targets for the Jacobian Matrix calculations. Defaults to self.jac_targets. [IN]

  • freq_grid (~pyarts3.arts.AscendingGrid, optional) – A frequency grid. Unit: Hz. Defaults to self.freq_grid. [IN]

  • atm_point (~pyarts3.arts.AtmPoint, optional) – An atmospheric point in ARTS. Defaults to self.atm_point. [IN]