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Přenos polarizovaného záření ve sluneční atmosféře
dc.contributor.advisorHeinzel, Petr
dc.creatorŠtěpán, Jiří
dc.date.accessioned2021-01-15T17:43:30Z
dc.date.available2021-01-15T17:43:30Z
dc.date.issued2008
dc.identifier.urihttp://hdl.handle.net/20.500.11956/17738
dc.description.abstractThe adequate theoretical models of the NLTE radiative transfer are needed for interpretation of the complicated spectra emerging from the magnetized solar atmosphere. In the first part of the thesis, the quantum theory of polarization is reviewed along with the problem of NLTE radiative transfer of the 2nd kind. A general notation for a numerical treatment of the atomic density matrix is introduced. A lambda-operator splitting technique is presented and used for development of a novel preconditioning method analogous to the Jacobi iteration algorithm. Number of processes is taken into account: atomic polarization, level-crossings, Paschen-Back effect, Hanle and Zeeman effects, optical pumping, collisional (de)polarization. A nonlinear multigrid technique is developed in the framework of polarized radiative transfer theory and the eficiency of the method is discussed. The potential of this new solver is demonstrated on an example of transfer of the optically thick line of a multiterm atom in the Paschen-Back effect regime. In the second part of the thesis, the particular problem of impact polarization of the hydrogen H-alpha line in solar flares is considered. The semi-empirical models of the flaring chromosphere are used to find the differential effects of the proton beam on the line intensity and linear...en_US
dc.languageEnglishcs_CZ
dc.language.isoen_US
dc.publisherUniverzita Karlova, Matematicko-fyzikální fakultacs_CZ
dc.titlePolarized Radiative Transfer in Solar Atmosphereen_US
dc.typedizertační prácecs_CZ
dcterms.created2008
dcterms.dateAccepted2008-09-23
dc.description.facultyMatematicko-fyzikální fakultacs_CZ
dc.description.facultyFaculty of Mathematics and Physicsen_US
dc.identifier.repId42555
dc.title.translatedPřenos polarizovaného záření ve sluneční atmosféřecs_CZ
dc.contributor.refereeDegĺ Innocenti, Egidio Landi
dc.contributor.refereeBueno, Javier Trujillo
dc.identifier.aleph001008337
thesis.degree.namePh.D.
thesis.degree.leveldoktorskécs_CZ
thesis.degree.disciplineTheoretical Physics, Astronomy and Astrophysicsen_US
thesis.degree.disciplineTeoretická fyzika, astronomie a astrofyzikacs_CZ
thesis.degree.programPhysicsen_US
thesis.degree.programFyzikacs_CZ
uk.thesis.typedizertační prácecs_CZ
uk.faculty-name.csMatematicko-fyzikální fakultacs_CZ
uk.faculty-name.enFaculty of Mathematics and Physicsen_US
uk.faculty-abbr.csMFFcs_CZ
uk.degree-discipline.csTeoretická fyzika, astronomie a astrofyzikacs_CZ
uk.degree-discipline.enTheoretical Physics, Astronomy and Astrophysicsen_US
uk.degree-program.csFyzikacs_CZ
uk.degree-program.enPhysicsen_US
thesis.grade.csProspěl/acs_CZ
thesis.grade.enPassen_US
uk.abstract.enThe adequate theoretical models of the NLTE radiative transfer are needed for interpretation of the complicated spectra emerging from the magnetized solar atmosphere. In the first part of the thesis, the quantum theory of polarization is reviewed along with the problem of NLTE radiative transfer of the 2nd kind. A general notation for a numerical treatment of the atomic density matrix is introduced. A lambda-operator splitting technique is presented and used for development of a novel preconditioning method analogous to the Jacobi iteration algorithm. Number of processes is taken into account: atomic polarization, level-crossings, Paschen-Back effect, Hanle and Zeeman effects, optical pumping, collisional (de)polarization. A nonlinear multigrid technique is developed in the framework of polarized radiative transfer theory and the eficiency of the method is discussed. The potential of this new solver is demonstrated on an example of transfer of the optically thick line of a multiterm atom in the Paschen-Back effect regime. In the second part of the thesis, the particular problem of impact polarization of the hydrogen H-alpha line in solar flares is considered. The semi-empirical models of the flaring chromosphere are used to find the differential effects of the proton beam on the line intensity and linear...en_US
uk.file-availabilityV
uk.grantorUniverzita Karlova, Matematicko-fyzikální fakultacs_CZ
thesis.grade.codeP
uk.publication-placePrahacs_CZ
uk.thesis.defenceStatusO
uk.departmentExternal.nameAstronomický ústav AV ČR, v.v.i.cs
uk.departmentExternal.nameAstronomical Institute, Academy of Sciences of the Czech Republicen
dc.identifier.lisID990010083370106986


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