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Davidson R.C. — Theory of Nonneutral Plasmas
Davidson R.C. — Theory of Nonneutral Plasmas

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Название: Theory of Nonneutral Plasmas

Автор: Davidson R.C.

Язык: en

Рубрика: Физика/

Статус предметного указателя: Готов указатель с номерами страниц

ed2k: ed2k stats

Год издания: 1974

Количество страниц: 199

Добавлена в каталог: 28.06.2005

Операции: Положить на полку | Скопировать ссылку для форума | Скопировать ID
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Предметный указатель
Abramovich, V.U.      189
Acceleration of ions      see “Collective-effect acceleration”
Alfven critical current      84 88 132
Alfven waves      177
Alfven, H.      2(28) 84(142) 132(142) 179 186
Allison, R.W., Jr.      2(10) 141(10) 178
Altyntsev, A.T.      2(56) 181
Andelfinger, C.      2(19) 141(19) 179
Anderson, D.V.      3(117) 113(117) 184
Andrews, M.L.      2(37 50 51) 3(50 51) 113(50 51) 126(37) 180 181
Autoresonant accelerator      188
Avco Hipac      2
Axisymmetric equilibria for mirror-confined plasma      96 141
Axisymmetric equilibria for plasma column      92
Baldwin, D.E.      167(150) 186
Beam-plasma interaction      see “Relativistic two-stream instability” “Two-rotating-stream
Benford, J.      2(39 63) 3(123 126) 125(123 126) 126(39) 140(123 126) 180 182 185 189
Bennett pinch, macroscopic model      40
Bennett, W.H.      2(34 44) 3(44) 35(44) 40(44) 126(34) 180 181 189
Berg, R.E.      2(20) 141(20) 179
Berk, H.L.      3(109) 69(109) 109(109) 184
Bernstein modes in nonneutral plasma      171
Bernstein, I.B.      83(141) 88(141) 159(147) 167(150) 186
Betatron oscillations      153
Bethe, H.A.      2(65) 182
Binary collisions      1 10
Block, J.      2(40) 126(40) 180
Bludman, S.A.      188
Boers, J.E.      2(38) 126(38) 180 191
Bogdankevich, L.S.      2(59) 3(59) 80(59) 81(59) 86(59) 181
Bogema, B.      2(78 80) 3(80) 28(138) 30(138) 31(138) 39(138) 60(80) 66(80) 95(78) 98(78) 100(78) 183 186
Bonch-Osmolovskii, A.G.      2(16) 141(16) 179 191
Book, D.L.      3(123 126) 125(123 126) 140(123 126) 185
Boris, J.P.      3(125) 125(125) 140(125) 185
Bradley, L.P.      2(38) 126(38) 180 188
Breizman, B.N.      189 (see also “Breyzman”)
Brewer, G.R.      1(4) 3(103) 45(4) 69(103) 178 184
Breyzman, B.N.      2(56) 181
Briggs, R.J.      3(110) 67(110) 69(110) 74(110) 18.4 190 192
Brillouin flow      7 102 169
Brillouin, L.      7(133) 185
Budker's parameter      133 144
Budker, G.J.      2(30) 144(30) 180
Buneman, O.      2(70) 3(70 104) 24(70) 64 65(70) 69(104) 182 184 191
Burton, J.      2(40) 126(40) 180
Charged particle motion in nonneutral plasma      4
Christofilos, N.C.      3(120 121) 113(120 121) 185
Chu, K.R.      2(64) 182
Chupp, W.W.      2(10 14) 141(10 14) 178
Closure of macroscopic fluid equations      14
Cold-plasma approximation      11 14
Cold-plasma equations      see also “Macroscopic fluid equations”
Cold-plasma equations for relativistic nonneutral plasma      14
Cold-plasma equations, equilibrium force balance      17
Collective effects      1 2
Collective-effect acceleration in linear-beam geometries      2
Collective-effect acceleration, relativistic electron rings      25 141
Condit, W.C., Jr.      3(121) 113(121) 185
Coriolis acceleration      165
Cox, J.L.      189
Crawford, F.W.      171(155) 172(155) 187
Critical current      see “Alfven critical current”
Cusse, V.R.      2(51) 3(51) 113(51) 181
Cutler, C.C.      3(100) 69(100) 184
Daugherty, J.D.      2(66 67 69 70) 3(70 110) 24(70) 64 65(70) 67(110) 69(110) 74(118) 182 184
Davidson, R.C.      1(9) 2(25 75 76 77 78 79 80) 3(76 77 78 79 80 111 127 132) 6(76 77) 57(79) 60(80) 69(111) 92(75) 98(75) 100(76 77 78) 102(78) 103(76 77) 107(76 77) 109(77) 112(77) 125(127) 140(127) 141(25) 142(25 132) 146(132) 149 151(25) 155(77) 159(76 77) 162(76 77) 166(77) 168(76 77) 169(76 77) 170(152) 174(77) 176(77 156) 178 179 182 183 184 185 186 187 191
Davitian, H.      2(50 51) 3(50 51) 113(50 51) 181
De Silva, A.W.      192
Debye shielding in nonneutral plasma      1
DeNeef, C.P.      2(73) 182
dePach, D.C.      188
Diamagnetic equilibria      see “Relativistic diamagnetic equilibria”
Dielectric function      see “Dispersion relation”
Diocotron instability      66
Diocotron instability, dispersion relation      71
Diocotron instability, growth rate      72
Diocotron instability, nonlinear stabilization      73
Diocotron instability, resonant      74
Diocotron instability, sufficient condition for stability      67
Dispersion relation for Berstein modes      171
Dispersion relation for diocotron instability      71
Dispersion relation for electromagnetic waves in nonneutral plasma      175 176
Dispersion relation for electron plasma oscillations      170
Dispersion relation for electron whistlers      177
Dispersion relation for electrostatic waves in nonneutral plasma      45 49 162 168
Dispersion relation for loss-cone instability      172
Dispersion relation for nonneutral plasma-filled waveguide      49 50
Dispersion relation for relativistic two-stream instability      78 80
Dispersion relation for surface waves on nonneutral plasma column      60
Dispersion relation for two-rotating-stream instability      57 63
Distribution function      11 12
Dolbilov, G.V.      2(16) 141(16) 179
Dorman, G.      189
Dory, R.A.      171(154) 187
Dove, W.F.      190 192
Drobot, A.T.      2(75) 92(75) 95(78) 159(148) 182 186
Drummond, W.E.      188
E-layers      see “Relativistic E-layers”
Ecker, B.      2(39) 126(39) 180
Electron beams      see “Relativistic electron beams”
Electron electron two-steam instabilities      see “Instabilities”
Electron ion two-steam instabilities      see “Instabilities”
Electron plasma oscillations      171
Electron rings      see “Relativistic electron rings”
Electrostatic approximation      42 156 162
Elmore, W.C.      191
Eninger, J.E.      2(67) 182
Equation of state, isothermal      40
Equilibria and macroscopic fluid description      14 17 41
Equilibria and Vlasov description      12 90—154
Equilibria for axisymmetric mirror-confined plasmas      96
Equilibria for axisymmetric plasma column      92
Equilibria hollow beam      25 69 109
Equilibria, nonrelativistic nondiamagnetic      21 98
Equilibria, relativistic diamagnetic      25
Equilibria, relativistic E layer      113
Equilibria, relativistic electron beam      32 40 125
Equilibria, relativistic electron ring      141
Equilibria, rigid-rotor      100
Equilibrium force equation      17
Equilibrium force equation, and macroscopic fluid description      15
Equilibrium force equation, for Bennett pinch      40
Eskov, A.G.      2(56) 181
Fainberg, Ya., B.      2(31 60) 180 182 189
Fargo, V.      2(43) 126(43) 180
Feld, B.T.      2(65) 182
Fessenden, T.J.      3(121) 113(121) 185 191
Field reversal      27 121 125
Fisher, S.      3(116) 113(116) 184
Fleischmann, H.H.      2(50 51) 3(50 51) 113(50 51) 181
Fluid equations      see “Macroscopic fluid equations”
Fomentation instability      189 190
Frame, J.M.      2(40) 126(40) 180
Freidberg, J.P.      192
Friedman, M.      2(42 45 48 49) 126(42) 180 181 190
Gardner, C.S.      159(149) 186
Garren, A.A.      2(14) 141(14) 178
Gerber, K.A.      190
Goldenbaum, G.C.      190 192
Goldreich, P.      192
Gould, R.W.      1(7) 45(7) 178
Grateau, P.      3(128) 185
Graybill, S.E.      2(32 36 41 53 55) 126(32 36 41) 180 181
Griem, H.      2(86) 183
Grodzins, L.      2(66) 182
Guest, G.E.      171(154) 187
Guillory, J.      189
Hamasaki, S.      176(157) 187
Hammer, D.A.      2(37 40 42 43 57) 3(111 122) 69(111) 125(122) 126(37 40 42 43) 129(122) 130(122) 134(122) 135(122) 140(122) 180 181 184 185 190
Harris, E.G.      171(154) 187
Hay, H.G.      3(98) 69(98) 184
Heat flow tensor      15
Heating due to relativistic beam-plasma interaction      2
Heckrotte, W.      3(105) 69(105) 184
Herndon, M.      2(45) 181 190
Herrmann, W.      2(19) 141(19) 179
Hester, R.E.      3(121) 113(121) 185
Hieronymus, J.L.      140(143) 186
Hirsch, R.L.      191
Historical background      1
Hollow beam equilibria      25 69 109
Hornady, B.      31(139) 186
Humphries, S.      3(121) 113(121) 185
Instability, diocotron      66
Instability, electromagnetic      175 176
Instability, electron electron two-stream      172
Instability, electron-electron two-rotating-stream      55
Instability, electron-ion two-rotating-stream      62
Instability, filamentation      189 190
Instability, loss cone      171
Instability, relativistic electron-electron two-stream      83
Instability, relativistic electron-ion two-stream      88
Instability, resonant diocotron      74
Iovnovich, M.L.      2(16) 141(16) 179
Ivanov, A.A.      2(58) 181
Ivanov, G.A.      2(16) 141(16) 179
Ivanov, I.N.      2(16) 141(16) 179
Jancarik, J.      190
Janes, G.S.      2(65 66 67) 182
Johnson, D.L.      2(38) 126(38) 180
Julian, W.H.      192
Jurtmellaer, R.      2(56) 181
Kammash, T.      191
Kapchinskij, I.M      153(145) 186
Kapetanakos, C.A.      2(57 71 72 75) 3(111) 69(111) 92(75) 95(78) 181 182 184 190 192
Keefe, D.      2(10 11 12 13 14 27) 141(10 11 12 13 14 27) 178 179
Kegel, W.H.      3(129) 142(129) 185
Kelleher, D.      191
Kelly, J.G.      189
Killeen, J.      184
Kim, H.      2(20) 141(20) 179
Kinetic equation      see “Vlasov equation”
Klimontovich, Y.L.      2(90) 10(90) 90(90) 183
Klystron      1
Knauer, W.      3(107) 69(107) 184
Kolb, A.C.      2(40) 126(40) 180
Kolomenskii, A.A.      190
Koroteev, V.I.      2(56) 181
Koshkarev, D.G.      190
Kozhuhov, I.V.      2(16) 141(16) 179
Krall, N.A.      2(76 77 79 88) 3(76 77 79) 6(76 77) 10(88) 57(79) 90(88) 95(76 77) 98(76 77) 100(76 77) 103(76 77) 107(76 77) 109(77) 112(77) 155(77) 156(77) 159(76 77) 162(76 77) 164(77) 166(77) 168(76 77) 169(76 77) 174(77) 176(77) 170(88) 13(88) 14(88) 182 183
Krasovitskii, V.B.      188
Kribel, R.E.      2(50 51) 3(50 51) 113(50 51) 181
Kuppers, G.      190
Kusse, B.      2(50) 3(50) 113(50) 181
Kuswa, G.W.      188 190
Kuznetsov, A.B.      2(16) 141(16) 179
Kyhl, R.L.      3(102) 69(102) 184
Labus, J.      1(5) 45(5) 178
Lambertson, G.R.      2(10 13 14) 141(10 13 14) 178
Lampe, M.      190
Landau contour      167
Landau damping      171
Landau, L.D.      11(135) 77(135) 185
Landau, R.W.      190
Langdon, A.B.      191
Langmuir, I.      1(2) 178
Laslett, L.J.      2(10 13 14) 141(10 13 14) 178 191
Lau, Y.Y.      190
Lawson, J.D.      2(25 26 94 95 96) 3(25) 34(95 96) 37(95 96) 97(25) 132(94 95 96) 141(25 26) 142(25) 150(144) 154(95 96) 179 183 186
Lebedev, A.N.      190
Lee, R.      2(51) (125) 13(51) 113(51) 125(125) 140(125) 181 185 189 190
Levine, D.M.      191
Levine, L.S.      2(37 40) 126(37 40) 180
Levy, R.H.      2(65 66 68 69 70) 3(70) 24(70) 64 65(70) 67(106) 67(110) 69(106 108 110) 79(106) 74(110) 182 184 191
Lewis, J.A.      1(3) 45(3) 178
Link, W.T.      2(33) 126(33) 180
Linson, L.M.      45(140) 186 191
Livingston, R.S.      188
Logan, B.G.      190
Loss cone, distribution for nonneutral plasma      104
Loss cone, instability      171
Lovelace, R.V.      2(51 62) 3(51) 113(51) 181 182 190
Luccio, A.U.      2(10 14) 141(10 14) 178
Luhmann, N.C.      192
Lupton, W.H.      2(40) 126(40) 180
MacFarlane, C.C.      3(98) 69(98) 184
Macroscopic equilibria for Bennett pinch      40
Macroscopic equilibria for nonneutral plasma column      21
Macroscopic equilibria for relativistic electron beam      32
Macroscopic equilibria, equilibrium force equation      17
Macroscopic equilibria, nonrelativistic nondiamagnetic      21
Macroscopic equilibria, relativistic diamagnetic      25
Macroscopic fluid equations and cold-plasma approximation      11 14
Macroscopic fluid equations and derivation from Vlasov equation      14
Macroscopic fluid equations for relativistic nonneutral plasma      14—16
Macroscopic stability and diocotron instability      66
Macroscopic stability and electrostatic disperson relation for constant density plasma column      45
Macroscopic stability and linearized fluid-Poisson equations      41
Macroscopic stability for nonneutral plasma-filled waveguide      49
Macroscopic stability for relativistic beam plasma interaction      78
Macroscopic stability for surface waves on a nonneutral plasma column      60
Macroscopic stability, stability theorem      67
Magnetoelectnc confinement      1
Mahajan, S.      3(132) 142(132) 146(132) 185 191
Mahankov, V.G.      2(16) 141(16) 179
Makhavkov, V.G.      191
Manheimer, W.M.      190
Marder, B.      3(115) 113(115) 184
Martin, J.A.      188
Martin, T.H.      2(38) 126(38) 180
Marx, K.D.      3(114) 113(114) 116(114) 117(114) 121(114) 123(114) 125(114) 184
McArthur, D.A.      189
McKee, C.F.      189
McNeill, W.H.      2(36 55) 126(36) 180
Microwave production      1
Miller, P.A.      190
Mirror-confined equilibria      96 141
Mjolsness, R.C.      188
Moment-Maxwell equations      see “Macroscopic fluid equations”
Montgomery, D.C.      2(89 91) 10(89) 90(89 91) 176(91) 177(91) 183
Morse, R.L.      192
Nablo, S.V.      2(32) 126(32) 180
Nasalov, V.L.      2(56) 181
Nation, J.A.      2(46 50 51) 3(50 51) 113(50 51) 181
Nee, S.F.      192
Neil, V.K.      3(105) 69(105) 184 190
Nielsen, C.E.      190
Nocentini, A.      3(109) 69(109) 109(109) 184
Nonneutral plasma, definition      1
Nonneutral plasma, examples      1 2
Nonneutral plasma, macroscopic equilibria and stability      14 17 89
Nonneutral plasma, Vlasov equilibria and stability      12 90—177
Oliphant, W.F.      2(40 43) 126(40 43) 180
Olson, C.L.      190
Ott, E.      3(130) 142(130) 185 189 190
Particle stress tensor      14 100 107 111 138 148
Pechacek, R.E.      2(71 72 73) 182 192
Perelstein, E.A.      2(16) 141(16) 7
Perkins, W.A.      2(10 13 14) 141(10 13 14) 178
Peterson, J.M.      2(10 13 14) 141(10 13 14) 7
Pfirsch, D.      3(113) 113(113) 122(113) 184
Phase space      12 142
Pierce, J.R.      3(101) 69(101) 184 191
Placious, R.C.      2(22) 141(22) 179
Plasma oscillations      171
Porter, G.D.      3(121) 113(121) 185
Potzl, H.      1(8) 3(8) 45(8) 51(8) 775
Poukey, J.W.      189 190
Pressure tensor      see “Particle stress tensor”
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