The perpendicular permittivity of magnetized toroidal plasmas with elliptic magnetic surfaces
Abstract The Vlasov equation for charged particles is analyzed in an axially symmetric toroidal plasma configuration with an elliptic cross section of magnetic surfaces. The asymptotic solution of the Vlasov equation is found. The analytical expressions for the perpendicular component of the dielect...
Ausführliche Beschreibung
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Englisch |
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1997 |
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19 |
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Springer Online Journal Archives 1860-2002 |
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in: Czechoslovak journal of physics - 1952, 47(1997) vom: Aug., Seite 801-819 |
Übergeordnetes Werk: |
volume:47 ; year:1997 ; month:08 ; pages:801-819 ; extent:19 |
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NLEJ190332085 |
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520 | |a Abstract The Vlasov equation for charged particles is analyzed in an axially symmetric toroidal plasma configuration with an elliptic cross section of magnetic surfaces. The asymptotic solution of the Vlasov equation is found. The analytical expressions for the perpendicular component of the dielectric permittivity tensor are obtained. These expressions are used for theoretical analyses of the trapped and untrapped ion influence on the collisionless cyclotron wave dissipation. The evaluated dielectric tensor components can be used for computer calculations of the radio frequency field structure and the collisionless dissipated power related to trapped and untrapped ions in tokamak plasmas. It is shown that ion cyclotron resonance dissipation in tokamaks depends on toroidicity and ellipticity parameters and does not depend on plasma temperature. | ||
533 | |f Springer Online Journal Archives 1860-2002 | ||
700 | 1 | |a Nekrasov, F.M. |4 oth | |
700 | 1 | |a Elfimov, A.G. |4 oth | |
700 | 1 | |a De Azevedo, C.A. |4 oth | |
700 | 1 | |a De Assis, A.S. |4 oth | |
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(DE-627)NLEJ190332085 DE-627 ger DE-627 rakwb eng The perpendicular permittivity of magnetized toroidal plasmas with elliptic magnetic surfaces 1997 19 nicht spezifiziert zzz rdacontent nicht spezifiziert z rdamedia nicht spezifiziert zu rdacarrier Abstract The Vlasov equation for charged particles is analyzed in an axially symmetric toroidal plasma configuration with an elliptic cross section of magnetic surfaces. The asymptotic solution of the Vlasov equation is found. The analytical expressions for the perpendicular component of the dielectric permittivity tensor are obtained. These expressions are used for theoretical analyses of the trapped and untrapped ion influence on the collisionless cyclotron wave dissipation. The evaluated dielectric tensor components can be used for computer calculations of the radio frequency field structure and the collisionless dissipated power related to trapped and untrapped ions in tokamak plasmas. It is shown that ion cyclotron resonance dissipation in tokamaks depends on toroidicity and ellipticity parameters and does not depend on plasma temperature. Springer Online Journal Archives 1860-2002 Nekrasov, F.M. oth Elfimov, A.G. oth De Azevedo, C.A. oth De Assis, A.S. oth in Czechoslovak journal of physics 1952 47(1997) vom: Aug., Seite 801-819 (DE-627)NLEJ188990682 (DE-600)2045561-6 1572-9486 nnns volume:47 year:1997 month:08 pages:801-819 extent:19 http://dx.doi.org/10.1023/A:1021150620778 GBV_USEFLAG_U ZDB-1-SOJ GBV_NL_ARTICLE AR 47 1997 8 801-819 19 |
spelling |
(DE-627)NLEJ190332085 DE-627 ger DE-627 rakwb eng The perpendicular permittivity of magnetized toroidal plasmas with elliptic magnetic surfaces 1997 19 nicht spezifiziert zzz rdacontent nicht spezifiziert z rdamedia nicht spezifiziert zu rdacarrier Abstract The Vlasov equation for charged particles is analyzed in an axially symmetric toroidal plasma configuration with an elliptic cross section of magnetic surfaces. The asymptotic solution of the Vlasov equation is found. The analytical expressions for the perpendicular component of the dielectric permittivity tensor are obtained. These expressions are used for theoretical analyses of the trapped and untrapped ion influence on the collisionless cyclotron wave dissipation. The evaluated dielectric tensor components can be used for computer calculations of the radio frequency field structure and the collisionless dissipated power related to trapped and untrapped ions in tokamak plasmas. It is shown that ion cyclotron resonance dissipation in tokamaks depends on toroidicity and ellipticity parameters and does not depend on plasma temperature. Springer Online Journal Archives 1860-2002 Nekrasov, F.M. oth Elfimov, A.G. oth De Azevedo, C.A. oth De Assis, A.S. oth in Czechoslovak journal of physics 1952 47(1997) vom: Aug., Seite 801-819 (DE-627)NLEJ188990682 (DE-600)2045561-6 1572-9486 nnns volume:47 year:1997 month:08 pages:801-819 extent:19 http://dx.doi.org/10.1023/A:1021150620778 GBV_USEFLAG_U ZDB-1-SOJ GBV_NL_ARTICLE AR 47 1997 8 801-819 19 |
allfields_unstemmed |
(DE-627)NLEJ190332085 DE-627 ger DE-627 rakwb eng The perpendicular permittivity of magnetized toroidal plasmas with elliptic magnetic surfaces 1997 19 nicht spezifiziert zzz rdacontent nicht spezifiziert z rdamedia nicht spezifiziert zu rdacarrier Abstract The Vlasov equation for charged particles is analyzed in an axially symmetric toroidal plasma configuration with an elliptic cross section of magnetic surfaces. The asymptotic solution of the Vlasov equation is found. The analytical expressions for the perpendicular component of the dielectric permittivity tensor are obtained. These expressions are used for theoretical analyses of the trapped and untrapped ion influence on the collisionless cyclotron wave dissipation. The evaluated dielectric tensor components can be used for computer calculations of the radio frequency field structure and the collisionless dissipated power related to trapped and untrapped ions in tokamak plasmas. It is shown that ion cyclotron resonance dissipation in tokamaks depends on toroidicity and ellipticity parameters and does not depend on plasma temperature. Springer Online Journal Archives 1860-2002 Nekrasov, F.M. oth Elfimov, A.G. oth De Azevedo, C.A. oth De Assis, A.S. oth in Czechoslovak journal of physics 1952 47(1997) vom: Aug., Seite 801-819 (DE-627)NLEJ188990682 (DE-600)2045561-6 1572-9486 nnns volume:47 year:1997 month:08 pages:801-819 extent:19 http://dx.doi.org/10.1023/A:1021150620778 GBV_USEFLAG_U ZDB-1-SOJ GBV_NL_ARTICLE AR 47 1997 8 801-819 19 |
allfieldsGer |
(DE-627)NLEJ190332085 DE-627 ger DE-627 rakwb eng The perpendicular permittivity of magnetized toroidal plasmas with elliptic magnetic surfaces 1997 19 nicht spezifiziert zzz rdacontent nicht spezifiziert z rdamedia nicht spezifiziert zu rdacarrier Abstract The Vlasov equation for charged particles is analyzed in an axially symmetric toroidal plasma configuration with an elliptic cross section of magnetic surfaces. The asymptotic solution of the Vlasov equation is found. The analytical expressions for the perpendicular component of the dielectric permittivity tensor are obtained. These expressions are used for theoretical analyses of the trapped and untrapped ion influence on the collisionless cyclotron wave dissipation. The evaluated dielectric tensor components can be used for computer calculations of the radio frequency field structure and the collisionless dissipated power related to trapped and untrapped ions in tokamak plasmas. It is shown that ion cyclotron resonance dissipation in tokamaks depends on toroidicity and ellipticity parameters and does not depend on plasma temperature. Springer Online Journal Archives 1860-2002 Nekrasov, F.M. oth Elfimov, A.G. oth De Azevedo, C.A. oth De Assis, A.S. oth in Czechoslovak journal of physics 1952 47(1997) vom: Aug., Seite 801-819 (DE-627)NLEJ188990682 (DE-600)2045561-6 1572-9486 nnns volume:47 year:1997 month:08 pages:801-819 extent:19 http://dx.doi.org/10.1023/A:1021150620778 GBV_USEFLAG_U ZDB-1-SOJ GBV_NL_ARTICLE AR 47 1997 8 801-819 19 |
allfieldsSound |
(DE-627)NLEJ190332085 DE-627 ger DE-627 rakwb eng The perpendicular permittivity of magnetized toroidal plasmas with elliptic magnetic surfaces 1997 19 nicht spezifiziert zzz rdacontent nicht spezifiziert z rdamedia nicht spezifiziert zu rdacarrier Abstract The Vlasov equation for charged particles is analyzed in an axially symmetric toroidal plasma configuration with an elliptic cross section of magnetic surfaces. The asymptotic solution of the Vlasov equation is found. The analytical expressions for the perpendicular component of the dielectric permittivity tensor are obtained. These expressions are used for theoretical analyses of the trapped and untrapped ion influence on the collisionless cyclotron wave dissipation. The evaluated dielectric tensor components can be used for computer calculations of the radio frequency field structure and the collisionless dissipated power related to trapped and untrapped ions in tokamak plasmas. It is shown that ion cyclotron resonance dissipation in tokamaks depends on toroidicity and ellipticity parameters and does not depend on plasma temperature. Springer Online Journal Archives 1860-2002 Nekrasov, F.M. oth Elfimov, A.G. oth De Azevedo, C.A. oth De Assis, A.S. oth in Czechoslovak journal of physics 1952 47(1997) vom: Aug., Seite 801-819 (DE-627)NLEJ188990682 (DE-600)2045561-6 1572-9486 nnns volume:47 year:1997 month:08 pages:801-819 extent:19 http://dx.doi.org/10.1023/A:1021150620778 GBV_USEFLAG_U ZDB-1-SOJ GBV_NL_ARTICLE AR 47 1997 8 801-819 19 |
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the perpendicular permittivity of magnetized toroidal plasmas with elliptic magnetic surfaces |
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The perpendicular permittivity of magnetized toroidal plasmas with elliptic magnetic surfaces |
abstract |
Abstract The Vlasov equation for charged particles is analyzed in an axially symmetric toroidal plasma configuration with an elliptic cross section of magnetic surfaces. The asymptotic solution of the Vlasov equation is found. The analytical expressions for the perpendicular component of the dielectric permittivity tensor are obtained. These expressions are used for theoretical analyses of the trapped and untrapped ion influence on the collisionless cyclotron wave dissipation. The evaluated dielectric tensor components can be used for computer calculations of the radio frequency field structure and the collisionless dissipated power related to trapped and untrapped ions in tokamak plasmas. It is shown that ion cyclotron resonance dissipation in tokamaks depends on toroidicity and ellipticity parameters and does not depend on plasma temperature. |
abstractGer |
Abstract The Vlasov equation for charged particles is analyzed in an axially symmetric toroidal plasma configuration with an elliptic cross section of magnetic surfaces. The asymptotic solution of the Vlasov equation is found. The analytical expressions for the perpendicular component of the dielectric permittivity tensor are obtained. These expressions are used for theoretical analyses of the trapped and untrapped ion influence on the collisionless cyclotron wave dissipation. The evaluated dielectric tensor components can be used for computer calculations of the radio frequency field structure and the collisionless dissipated power related to trapped and untrapped ions in tokamak plasmas. It is shown that ion cyclotron resonance dissipation in tokamaks depends on toroidicity and ellipticity parameters and does not depend on plasma temperature. |
abstract_unstemmed |
Abstract The Vlasov equation for charged particles is analyzed in an axially symmetric toroidal plasma configuration with an elliptic cross section of magnetic surfaces. The asymptotic solution of the Vlasov equation is found. The analytical expressions for the perpendicular component of the dielectric permittivity tensor are obtained. These expressions are used for theoretical analyses of the trapped and untrapped ion influence on the collisionless cyclotron wave dissipation. The evaluated dielectric tensor components can be used for computer calculations of the radio frequency field structure and the collisionless dissipated power related to trapped and untrapped ions in tokamak plasmas. It is shown that ion cyclotron resonance dissipation in tokamaks depends on toroidicity and ellipticity parameters and does not depend on plasma temperature. |
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The perpendicular permittivity of magnetized toroidal plasmas with elliptic magnetic surfaces |
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