Modification of a nonlocal electron energy distribution in a bounded plasma
It is demonstrated experimentally, in a pulsed discharge, that it is possible to modify the "tail" of a nonlocal electron energy distribution (EED) without significantly changing the electron density and temperature (mean energy). The EED tail is modified by changing the potential of a sma...
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Veröffentlicht in: | Physical review. E, Statistical physics, plasmas, fluids, and related interdisciplinary topics Statistical physics, plasmas, fluids, and related interdisciplinary topics, 2005-09, Vol.72 (3 Pt 2), p.036410-036410, Article 036410 |
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container_title | Physical review. E, Statistical physics, plasmas, fluids, and related interdisciplinary topics |
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creator | DeJoseph, Jr, C A Demidov, V I Kudryavtsev, A A |
description | It is demonstrated experimentally, in a pulsed discharge, that it is possible to modify the "tail" of a nonlocal electron energy distribution (EED) without significantly changing the electron density and temperature (mean energy). The EED tail is modified by changing the potential of a small portion of the plasma boundary and/or by changing the volume creation rate of electrons with energies in the range of the tail of the EED. The discussed effects are a direct result of the nonlocal nature of the EED and have applications to a number of basic research issues associated with discharges under nonequilibrium conditions. As an example, we discuss the possibility of utilizing these methods to measure electron impact excitation cross sections from the metastable states of atoms, which are difficult to measure by other means. The experiments have been conducted in an argon and argon-nitrogen pulsed rf inductively coupled plasma discharge. |
doi_str_mv | 10.1103/PhysRevE.72.036410 |
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The EED tail is modified by changing the potential of a small portion of the plasma boundary and/or by changing the volume creation rate of electrons with energies in the range of the tail of the EED. The discussed effects are a direct result of the nonlocal nature of the EED and have applications to a number of basic research issues associated with discharges under nonequilibrium conditions. As an example, we discuss the possibility of utilizing these methods to measure electron impact excitation cross sections from the metastable states of atoms, which are difficult to measure by other means. 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E, Statistical physics, plasmas, fluids, and related interdisciplinary topics</title><addtitle>Phys Rev E Stat Nonlin Soft Matter Phys</addtitle><description>It is demonstrated experimentally, in a pulsed discharge, that it is possible to modify the "tail" of a nonlocal electron energy distribution (EED) without significantly changing the electron density and temperature (mean energy). The EED tail is modified by changing the potential of a small portion of the plasma boundary and/or by changing the volume creation rate of electrons with energies in the range of the tail of the EED. The discussed effects are a direct result of the nonlocal nature of the EED and have applications to a number of basic research issues associated with discharges under nonequilibrium conditions. As an example, we discuss the possibility of utilizing these methods to measure electron impact excitation cross sections from the metastable states of atoms, which are difficult to measure by other means. The experiments have been conducted in an argon and argon-nitrogen pulsed rf inductively coupled plasma discharge.</description><subject>70 PLASMA PHYSICS AND FUSION TECHNOLOGY</subject><subject>ARGON</subject><subject>BOUNDARY LAYERS</subject><subject>ELECTRON DENSITY</subject><subject>ELECTRON TEMPERATURE</subject><subject>ELECTRONS</subject><subject>ENERGY SPECTRA</subject><subject>EXCITATION</subject><subject>HIGH-FREQUENCY DISCHARGES</subject><subject>ION TEMPERATURE</subject><subject>METASTABLE STATES</subject><subject>MODIFICATIONS</subject><subject>NITROGEN</subject><subject>PLASMA</subject><subject>PLASMA DENSITY</subject><issn>1539-3755</issn><issn>1063-651X</issn><issn>1550-2376</issn><issn>1095-3787</issn><fulltext>true</fulltext><rsrctype>article</rsrctype><creationdate>2005</creationdate><recordtype>article</recordtype><recordid>eNpFkF1LwzAUhoMobk7_gBdSELzrzHezSxnzAyeK6HVIk1MX6ZLZtML-vZ2deHU-eM7L4UHonOApIZhdv6y26RW-F9OCTjGTnOADNCZC4JyyQh7uejbLWSHECJ2k9Ikxo0zxYzQiknIiFB2jx6fofOWtaX0MWawyk4UY6mhNnUENtm36NQRoPraZ86ltfNn9oj70aBm74MBlm9qktTlFR5WpE5zt6wS93y7e5vf58vnuYX6zzC2jszZXYBzHkkIlSuUYNkooUxnKhLMCFHGlZIZbBbwfQRXUCbAYFzMlDWccswm6HHJjar1O1rdgVzaG0L-rKS6wZJL21NVAbZr41UFq9donC3VtAsQuadknU4J5D9IBtE1MqYFKbxq_Ns1WE6x3ovWfaF1QPYjujy726V25Bvd_sjfLfgBpD3rt</recordid><startdate>200509</startdate><enddate>200509</enddate><creator>DeJoseph, Jr, C A</creator><creator>Demidov, V I</creator><creator>Kudryavtsev, A A</creator><scope>NPM</scope><scope>AAYXX</scope><scope>CITATION</scope><scope>7X8</scope><scope>OTOTI</scope></search><sort><creationdate>200509</creationdate><title>Modification of a nonlocal electron energy distribution in a bounded plasma</title><author>DeJoseph, Jr, C A ; Demidov, V I ; Kudryavtsev, A A</author></sort><facets><frbrtype>5</frbrtype><frbrgroupid>cdi_FETCH-LOGICAL-c329t-8ead4062ef5b8d30a858afa235dc5e81db63a4c8e4c5ee872d5ec007986a43403</frbrgroupid><rsrctype>articles</rsrctype><prefilter>articles</prefilter><language>eng</language><creationdate>2005</creationdate><topic>70 PLASMA PHYSICS AND FUSION TECHNOLOGY</topic><topic>ARGON</topic><topic>BOUNDARY LAYERS</topic><topic>ELECTRON DENSITY</topic><topic>ELECTRON TEMPERATURE</topic><topic>ELECTRONS</topic><topic>ENERGY SPECTRA</topic><topic>EXCITATION</topic><topic>HIGH-FREQUENCY DISCHARGES</topic><topic>ION TEMPERATURE</topic><topic>METASTABLE STATES</topic><topic>MODIFICATIONS</topic><topic>NITROGEN</topic><topic>PLASMA</topic><topic>PLASMA DENSITY</topic><toplevel>online_resources</toplevel><creatorcontrib>DeJoseph, Jr, C A</creatorcontrib><creatorcontrib>Demidov, V I</creatorcontrib><creatorcontrib>Kudryavtsev, A A</creatorcontrib><collection>PubMed</collection><collection>CrossRef</collection><collection>MEDLINE - Academic</collection><collection>OSTI.GOV</collection><jtitle>Physical review. 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E, Statistical physics, plasmas, fluids, and related interdisciplinary topics</jtitle><addtitle>Phys Rev E Stat Nonlin Soft Matter Phys</addtitle><date>2005-09</date><risdate>2005</risdate><volume>72</volume><issue>3 Pt 2</issue><spage>036410</spage><epage>036410</epage><pages>036410-036410</pages><artnum>036410</artnum><issn>1539-3755</issn><issn>1063-651X</issn><eissn>1550-2376</eissn><eissn>1095-3787</eissn><abstract>It is demonstrated experimentally, in a pulsed discharge, that it is possible to modify the "tail" of a nonlocal electron energy distribution (EED) without significantly changing the electron density and temperature (mean energy). The EED tail is modified by changing the potential of a small portion of the plasma boundary and/or by changing the volume creation rate of electrons with energies in the range of the tail of the EED. The discussed effects are a direct result of the nonlocal nature of the EED and have applications to a number of basic research issues associated with discharges under nonequilibrium conditions. As an example, we discuss the possibility of utilizing these methods to measure electron impact excitation cross sections from the metastable states of atoms, which are difficult to measure by other means. The experiments have been conducted in an argon and argon-nitrogen pulsed rf inductively coupled plasma discharge.</abstract><cop>United States</cop><pmid>16241582</pmid><doi>10.1103/PhysRevE.72.036410</doi><tpages>1</tpages></addata></record> |
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source | American Physical Society Journals |
subjects | 70 PLASMA PHYSICS AND FUSION TECHNOLOGY ARGON BOUNDARY LAYERS ELECTRON DENSITY ELECTRON TEMPERATURE ELECTRONS ENERGY SPECTRA EXCITATION HIGH-FREQUENCY DISCHARGES ION TEMPERATURE METASTABLE STATES MODIFICATIONS NITROGEN PLASMA PLASMA DENSITY |
title | Modification of a nonlocal electron energy distribution in a bounded plasma |
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