The investigation of photons energy distribution changing in ignition condition of equimolar deuterium- tritium fuel

At the beginning of thermonuclear ignition in fusion plasma, the bremsstrahlung radiation is dominant phenomenon, the photons distribution function is Planckian and plasma is considered as optically thick one. But at a certain energy, the bremsstrahlung radiation and Compton scattering losses rates...

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Main Authors: A Ghasemizad, M Nazirzadeh, B Khanbabaei
Format: Article
Language:English
Published: Isfahan University of Technology 2018-09-01
Series:Iranian Journal of Physics Research
Subjects:
Online Access:http://ijpr.iut.ac.ir/browse.php?a_code=A-10-324-1&slc_lang=en&sid=1
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spelling doaj-ae37123ae79d489089f7ae98c4e269d12020-11-25T02:17:16ZengIsfahan University of TechnologyIranian Journal of Physics Research1682-69572345-36642018-09-01182243249The investigation of photons energy distribution changing in ignition condition of equimolar deuterium- tritium fuelA Ghasemizad0M Nazirzadeh1B Khanbabaei2 Department of Physics, University of Guilan, Iran Department of Physics, Center of Basic Science, Khatam ol Anbia University, Tehran, Iran School of Physics, Damghan University, Damghan, Iran At the beginning of thermonuclear ignition in fusion plasma, the bremsstrahlung radiation is dominant phenomenon, the photons distribution function is Planckian and plasma is considered as optically thick one. But at a certain energy, the bremsstrahlung radiation and Compton scattering losses rates become equal and plasma makes a transition from optically thick to optically thin and photons distribution switches from Planckian to a Bose-Einstein one. Dominating the Compton scattering and conservation of photon number density in this event, cause to increase the photons temperature and to decrease the negative role of Compton scattering in electrons balance equation. In this paper the photons distribution change effect in calculating of critical burn-up parameter by using of a Fortran programming code is investigated and the results are compared with a typical case where the photons have Planckian distribution throughout the ignition.http://ijpr.iut.ac.ir/browse.php?a_code=A-10-324-1&slc_lang=en&sid=1Compton scattering bremsstrahlung radiation dilution factor critical burn-up parameter
collection DOAJ
language English
format Article
sources DOAJ
author A Ghasemizad
M Nazirzadeh
B Khanbabaei
spellingShingle A Ghasemizad
M Nazirzadeh
B Khanbabaei
The investigation of photons energy distribution changing in ignition condition of equimolar deuterium- tritium fuel
Iranian Journal of Physics Research
Compton scattering
bremsstrahlung radiation
dilution factor
critical burn-up parameter
author_facet A Ghasemizad
M Nazirzadeh
B Khanbabaei
author_sort A Ghasemizad
title The investigation of photons energy distribution changing in ignition condition of equimolar deuterium- tritium fuel
title_short The investigation of photons energy distribution changing in ignition condition of equimolar deuterium- tritium fuel
title_full The investigation of photons energy distribution changing in ignition condition of equimolar deuterium- tritium fuel
title_fullStr The investigation of photons energy distribution changing in ignition condition of equimolar deuterium- tritium fuel
title_full_unstemmed The investigation of photons energy distribution changing in ignition condition of equimolar deuterium- tritium fuel
title_sort investigation of photons energy distribution changing in ignition condition of equimolar deuterium- tritium fuel
publisher Isfahan University of Technology
series Iranian Journal of Physics Research
issn 1682-6957
2345-3664
publishDate 2018-09-01
description At the beginning of thermonuclear ignition in fusion plasma, the bremsstrahlung radiation is dominant phenomenon, the photons distribution function is Planckian and plasma is considered as optically thick one. But at a certain energy, the bremsstrahlung radiation and Compton scattering losses rates become equal and plasma makes a transition from optically thick to optically thin and photons distribution switches from Planckian to a Bose-Einstein one. Dominating the Compton scattering and conservation of photon number density in this event, cause to increase the photons temperature and to decrease the negative role of Compton scattering in electrons balance equation. In this paper the photons distribution change effect in calculating of critical burn-up parameter by using of a Fortran programming code is investigated and the results are compared with a typical case where the photons have Planckian distribution throughout the ignition.
topic Compton scattering
bremsstrahlung radiation
dilution factor
critical burn-up parameter
url http://ijpr.iut.ac.ir/browse.php?a_code=A-10-324-1&slc_lang=en&sid=1
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