Spontaneous Emission of an Excited Atom in a Dusty Unmagnetized Plasma Medium

Investigation of spontaneous decay of an excited atom in dusty unmagnetized plasma is presented in this paper. The transverse contribution to the decay rate is normally associated with spontaneous emission. The rate of spontaneous emission can be obtained by Fermi’s golden rule. In this calculation,...

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Main Authors: Naser Alinejad, Noushin Pishbin
Format: Article
Language:English
Published: Wiley 2014-01-01
Series:Advances in Materials Science and Engineering
Online Access:http://dx.doi.org/10.1155/2014/746742
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author Naser Alinejad
Noushin Pishbin
author_facet Naser Alinejad
Noushin Pishbin
author_sort Naser Alinejad
collection DOAJ
description Investigation of spontaneous decay of an excited atom in dusty unmagnetized plasma is presented in this paper. The transverse contribution to the decay rate is normally associated with spontaneous emission. The rate of spontaneous emission can be obtained by Fermi’s golden rule. In this calculation, the transverse contribution to dielectric permittivity and Green function technique are used. Calculation of the decay rate of atoms is applicable to understand the particular structure of the vacuum state of the electromagnetic field.
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institution Kabale University
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series Advances in Materials Science and Engineering
spelling doaj-art-af86f79ab3024532a332f46863208be42025-02-03T05:47:50ZengWileyAdvances in Materials Science and Engineering1687-84341687-84422014-01-01201410.1155/2014/746742746742Spontaneous Emission of an Excited Atom in a Dusty Unmagnetized Plasma MediumNaser Alinejad0Noushin Pishbin1Plasma Physics Research School, Plasma Science & Technology Research Institute, Tehran 14399-51113, IranPlasma Physics Research School, Plasma Science & Technology Research Institute, Tehran 14399-51113, IranInvestigation of spontaneous decay of an excited atom in dusty unmagnetized plasma is presented in this paper. The transverse contribution to the decay rate is normally associated with spontaneous emission. The rate of spontaneous emission can be obtained by Fermi’s golden rule. In this calculation, the transverse contribution to dielectric permittivity and Green function technique are used. Calculation of the decay rate of atoms is applicable to understand the particular structure of the vacuum state of the electromagnetic field.http://dx.doi.org/10.1155/2014/746742
spellingShingle Naser Alinejad
Noushin Pishbin
Spontaneous Emission of an Excited Atom in a Dusty Unmagnetized Plasma Medium
Advances in Materials Science and Engineering
title Spontaneous Emission of an Excited Atom in a Dusty Unmagnetized Plasma Medium
title_full Spontaneous Emission of an Excited Atom in a Dusty Unmagnetized Plasma Medium
title_fullStr Spontaneous Emission of an Excited Atom in a Dusty Unmagnetized Plasma Medium
title_full_unstemmed Spontaneous Emission of an Excited Atom in a Dusty Unmagnetized Plasma Medium
title_short Spontaneous Emission of an Excited Atom in a Dusty Unmagnetized Plasma Medium
title_sort spontaneous emission of an excited atom in a dusty unmagnetized plasma medium
url http://dx.doi.org/10.1155/2014/746742
work_keys_str_mv AT naseralinejad spontaneousemissionofanexcitedatominadustyunmagnetizedplasmamedium
AT noushinpishbin spontaneousemissionofanexcitedatominadustyunmagnetizedplasmamedium