Laser-produced plasma diffusion across a transverse magnetic field

被引:0
|
作者
Gupta, DN [1 ]
Suk, H
Sharma, AK
Jaiman, NK
机构
[1] Korea Electrotechnol Res Inst, Ctr Adv Accelerators, Chang Won 641120, South Korea
[2] Indian Inst Technol, Ctr Energy Studies, New Delhi 110016, India
[3] Raj Rishi Coll, Dept Phys, Alwar 301001, India
关键词
laser-produced plasma; plasma expansion;
D O I
暂无
中图分类号
O4 [物理学];
学科分类号
0702 ;
摘要
A one-dimensional numerical result for laser-produced plasma diffusion across a transverse uniform magnetic field is presented. The laser with a Gaussian distribution of intensity perpendicular to the direction of propagation creates a plasma, which is allowed to expand across a transverse magnetic field. As the laser beam propagates, the density of electrons decreases on the axis, and a plasma channel evolves. The spatial and the temporal behaviors of the plasma parameters, like the electron density and the velocity, with the radial distance from the channel axis in the presence of a magnetic field are reported. The results, experimental and simulated, are compared and are found to be in reasonable agreement.
引用
收藏
页码:982 / 986
页数:5
相关论文
共 50 条
  • [21] The development of laser-produced plasma EUV light source
    Yang, De-Kun
    Wang, Du
    Huang, Qiu-Shi
    Song, Yi
    Wu, Jian
    Li, Wen-Xue
    Wang, Zhan-Shan
    Tang, Xia-Hui
    Xu, Hong-Xing
    Liu, Sheng
    Gui, Cheng-Qun
    CHIP, 2022, 1 (03):
  • [22] Thermal smoothing by laser-produced plasma of porous matter
    Kalal, M
    Limpouch, J
    Krousky, E
    Masek, K
    Rohlena, K
    Straka, P
    Ullschmied, J
    Kasperczuk, A
    Pisarczyk, T
    Gus'kov, SY
    Gromov, AI
    Rozanov, VB
    Kondrashov, VN
    FUSION SCIENCE AND TECHNOLOGY, 2003, 43 (03) : 275 - 281
  • [23] Electric field measurements in picosecond laser-produced plasma via X-ray spectroscopy
    Woolsey, N. C.
    Howe, J.
    Chambers, D. M.
    Courtois, C.
    Foerster, E.
    Gregory, C. D.
    Hall, I. M.
    Renner, O.
    Uschmann, I.
    HIGH ENERGY DENSITY PHYSICS, 2007, 3 (1-2) : 292 - 296
  • [24] Vacuum ultraviolet spectroscopic system using a laser-produced plasma
    Kaku, Masanori
    Yamaura, Takahiro
    Higashiguchi, Takeshi
    Kubodera, Shoichi
    Sasaki, Wataru
    Japanese Journal of Applied Physics, Part 1: Regular Papers and Short Notes and Review Papers, 2003, 42 (6 A): : 3458 - 3462
  • [25] The effect of oxygen on the delay time of flashover by a laser-produced plasma
    Jinno, M
    Kubo, M
    Aono, M
    Itatani, R
    JAPANESE JOURNAL OF APPLIED PHYSICS PART 1-REGULAR PAPERS SHORT NOTES & REVIEW PAPERS, 1997, 36 (5A): : 2870 - 2873
  • [26] Advanced Diagnostics of Electrons Escaping from Laser-Produced Plasma
    Krasa, Josef
    Krupka, Michal
    Agarwal, Shubham
    Nassisi, Vincenzo
    Singh, Sushil
    PLASMA, 2024, 7 (02) : 366 - 385
  • [27] Tin based laser-produced plasma source development for EUVL
    Hayden, P.
    White, J.
    Cummings, A.
    Dunne, P.
    Lysaght, M.
    Murphy, N.
    Sheridan, P.
    O'Sullivan, G.
    MICROELECTRONIC ENGINEERING, 2006, 83 (4-9) : 699 - 702
  • [28] Effective reduction of debris emitted from a laser-produced plasma
    Kandaka, N
    Kondo, H
    JAPANESE JOURNAL OF APPLIED PHYSICS PART 2-LETTERS, 1998, 37 (2A): : L174 - L176
  • [29] Plume Dynamics of Laser-Produced Swine Muscle Tissue Plasma
    Camacho, Joaquin J.
    Diaz, Luis
    Marin-Roldan, Alicia
    Moncayo, Samuel
    Caceres, Jorge O.
    APPLIED SPECTROSCOPY, 2016, 70 (07) : 1228 - 1238
  • [30] Present status of laser-produced plasma EUV light source
    Nagano, Hitoshi
    Abe, Tamotsu
    Nagai, Shinji
    Nakano, Masaki
    Akanuma, Yoshihiko
    Nakajima, Shin
    Kakizaki, Kouji
    Sumitani, Akira
    Fujimoto, Junichi
    Mizoguchi, Hakaru
    EXTREME ULTRAVIOLET (EUV) LITHOGRAPHY, 2010, 7636