PHYSICS OF GASES, PLASMAS, AND ELECTRIC DISCHARGES |
Prev
Next
|
|
|
Upstream ion wave excitation in an ion-beam-plasma system |
Kai-Yang Yi(弋开阳), Jin-Xiu Ma(马锦秀), Zi-An Wei(卫子安), Zheng-Yuan Li(李政元) |
Department of Modern Physics and Chinese Academy of Sciences Key Laboratory of Geospace Environment, University of Science and Technology of China, Hefei 230026, China |
|
|
Abstract Plasma normal modes in ion-beam-plasma systems were experimentally investigated previously only for the waves propagating in the downstream (along the beam) direction. In this paper, the ion wave excitation and propagation in the upstream (against the beam) direction in an ion-beam-plasma system were experimentally studied in a double plasma device. The waves were launched by applying a ramp voltage to a negatively biased excitation grid. Two kinds of wave signals were detected, one is a particle signal composed of burst ions and the other is an ion-acoustic signal arising from the background plasma. These signals were identified by the dependence of the signal velocities on the characteristics of the ramp voltage. The velocity of the burst ion signal increases with the decrease of the rise time and the increase of the peak-to-peak amplitude of the applied ramp voltage while that of the ion-acoustic signal is independent of these parameters. By adjusting these parameters such that the burst ion velocity approaches to the ion-acoustic velocity, the wave-particle interaction can be observed.
|
Received: 30 January 2018
Accepted manuscript online:
|
PACS:
|
52.35.-g
|
(Waves, oscillations, and instabilities in plasmas and intense beams)
|
|
52.35.Fp
|
(Electrostatic waves and oscillations (e.g., ion-acoustic waves))
|
|
52.35.Qz
|
(Microinstabilities (ion-acoustic, two-stream, loss-cone, beam-plasma, drift, ion- or electron-cyclotron, etc.))
|
|
Fund: Project supported by the National Natural Science Foundation of China (Grant Nos.11575183 and 11705201). |
Corresponding Authors:
Jin-Xiu Ma
E-mail: jxma@ustc.edu.cn
|
Cite this article:
Kai-Yang Yi(弋开阳), Jin-Xiu Ma(马锦秀), Zi-An Wei(卫子安), Zheng-Yuan Li(李政元) Upstream ion wave excitation in an ion-beam-plasma system 2018 Chin. Phys. B 27 055201
|
[11] |
Franck C, Klinger T and Piel A 1999 Phys. Lett. A 259 152
|
[1] |
Hershkowitz N, Romesser T, Knorr G and Goertz C K 1974 Phys. Rev. Lett. 33 754
|
[12] |
Nakamura Y, Bailung H and Ichiki R 2004 Phys. Plasmas 11 3795
|
[2] |
Gréesillon D and Doveil F 1975 Phys. Rev. Lett. 34 77
|
[13] |
Rapson C, Grulke O, Matyash K and Klinger T 2014 Phys. Plasmas 21 052103
|
[3] |
Sato N, Sugai H and Hatakeyama R 1975 Phys. Rev. Lett. 34 931
|
[14] |
Tokluoglu E and Kaganovich I D 2015 Phys. Plasmas 22 040701
|
[4] |
Fujita T, Ohnuma T and Adachi S 1975 Phys. Fluids 18 1216
|
[15] |
Lotov K V, Timofeev I V, Mesyats E A, Snytnikov A V and Vshivkov V A 2015 Phys. Plasmas 22 024502
|
[5] |
Brakenhoff G J, Baan A and Matitti T 1973 Plasma Phys. 15 157
|
[16] |
Koshkarov O, Smolyakov A I, Kaganovich I D and Ilgisonis V I 2015 Phys. Plasmas 22 052113
|
[6] |
Honzawa T 1984 Phys. Rev. Lett. 53 1915
|
[17] |
Deka M K, Adhikary N C, Misra A P, Bailung H and Nakamura Y 2012 Phys. Plasmas 19 103704
|
[7] |
Bonhomme G, Pierre T, Leclert G and Trulsen J 1991 Plasma Phys. Control. Fusion 33 507
|
[18] |
Sharma S K and Bailung H 2010 Phys. Plasmas 17 032301
|
[8] |
Lee S G, Diebold D A, Hershkowitz N and Moroz P 1996 Phys. Rev. Lett. 77 1290
|
[19] |
Wong A Y, Motley R W and D'Angelo N 1964 Phys. Rev. 133 A436
|
[9] |
Nagasawa T and Honzawa T 1996 Phys. Plasmas 3 2864
|
[20] |
Ma J X, Li Y F, Xiao D L, Li J J and Li Y R 2005 Rev. Sci. Instrum. 76 062205
|
[10] |
Nakamura Y and Komatsuda K 1998 J. Plasma Phys. 60 69
|
[21] |
Lonngren K E, Khazei M, Gabl E F and Bulson J M 1982 Plasma Phys. 24 1483
|
[11] |
Franck C, Klinger T and Piel A 1999 Phys. Lett. A 259 152
|
[22] |
Gabl E F and Lonngren K E 1984 Plasma Phys. Control. Fusion 26 799
|
[12] |
Nakamura Y, Bailung H and Ichiki R 2004 Phys. Plasmas 11 3795
|
[23] |
Raychaudhuri S, Gabl E F, Tsikis E K and Lonngren K E 1984 Plasma Phys. Control. Fusion 26 1451
|
[13] |
Rapson C, Grulke O, Matyash K and Klinger T 2014 Phys. Plasmas 21 052103
|
[24] |
Alexeff I, Jones W D and Lonngren K 1968 Phys. Rev. Lett. 21 878
|
[14] |
Tokluoglu E and Kaganovich I D 2015 Phys. Plasmas 22 040701
|
[25] |
Yi S, Bai E W and Lonngren K E 1997 Phys. Plasmas 4 2436
|
[15] |
Lotov K V, Timofeev I V, Mesyats E A, Snytnikov A V and Vshivkov V A 2015 Phys. Plasmas 22 024502
|
[26] |
Honzawa T and Nagasawa T 1997 Phys. Plasmas 4 3954
|
[16] |
Koshkarov O, Smolyakov A I, Kaganovich I D and Ilgisonis V I 2015 Phys. Plasmas 22 052113
|
[27] |
Xiao D L, Ma J X, Li Y R, Li Y F and Yu M Y 2007 Phys. Plasmas 14 092104
|
[17] |
Deka M K, Adhikary N C, Misra A P, Bailung H and Nakamura Y 2012 Phys. Plasmas 19 103704
|
[28] |
Wu F, Ma J X, Wei Z A, Yi K Y and Wang T T 2016 Phys. Plasmas 23 102118
|
[18] |
Sharma S K and Bailung H 2010 Phys. Plasmas 17 032301
|
[29] |
Wei Z A, Ma J X, Li Y R, Sun Y and Jiang Z Q 2016 Plasma Sci. Technol. 18 1076
|
[19] |
Wong A Y, Motley R W and D'Angelo N 1964 Phys. Rev. 133 A436
|
[20] |
Ma J X, Li Y F, Xiao D L, Li J J and Li Y R 2005 Rev. Sci. Instrum. 76 062205
|
[21] |
Lonngren K E, Khazei M, Gabl E F and Bulson J M 1982 Plasma Phys. 24 1483
|
[22] |
Gabl E F and Lonngren K E 1984 Plasma Phys. Control. Fusion 26 799
|
[23] |
Raychaudhuri S, Gabl E F, Tsikis E K and Lonngren K E 1984 Plasma Phys. Control. Fusion 26 1451
|
[24] |
Alexeff I, Jones W D and Lonngren K 1968 Phys. Rev. Lett. 21 878
|
[25] |
Yi S, Bai E W and Lonngren K E 1997 Phys. Plasmas 4 2436
|
[26] |
Honzawa T and Nagasawa T 1997 Phys. Plasmas 4 3954
|
[27] |
Xiao D L, Ma J X, Li Y R, Li Y F and Yu M Y 2007 Phys. Plasmas 14 092104
|
[28] |
Wu F, Ma J X, Wei Z A, Yi K Y and Wang T T 2016 Phys. Plasmas 23 102118
|
[29] |
Wei Z A, Ma J X, Li Y R, Sun Y and Jiang Z Q 2016 Plasma Sci. Technol. 18 1076
|
No Suggested Reading articles found! |
|
|
Viewed |
|
|
|
Full text
|
|
|
|
|
Abstract
|
|
|
|
|
Cited |
|
|
|
|
Altmetric
|
blogs
Facebook pages
Wikipedia page
Google+ users
|
Online attention
Altmetric calculates a score based on the online attention an article receives. Each coloured thread in the circle represents a different type of online attention. The number in the centre is the Altmetric score. Social media and mainstream news media are the main sources that calculate the score. Reference managers such as Mendeley are also tracked but do not contribute to the score. Older articles often score higher because they have had more time to get noticed. To account for this, Altmetric has included the context data for other articles of a similar age.
View more on Altmetrics
|
|
|