Please wait a minute...
Chin. Phys. B, 2016, Vol. 25(3): 035203    DOI: 10.1088/1674-1056/25/3/035203
PHYSICS OF GASES, PLASMAS, AND ELECTRIC DISCHARGES Prev   Next  

Enhanced laser-induced plasma channels in air

Yanlei Zuo(左言磊)1,2,3, Xiaofeng Wei(魏晓峰)1,2,3, Kainan Zhou(周凯南)1,2,3, Xiaoming Zeng(曾小明)1,2,3,Jingqin Su(粟敬钦)1,2,3, Zhihong Jiao(焦志宏)1, Na Xie(谢娜)1,2, Zhaohui Wu(吴朝辉)1
1. Laser Fusion Research Center, China Academy of Engineering Physics, Mianyang 621900, China;
2. Science and Technology on Plasma Physics Laboratory, Mianyang 621900, China;
3. IFSA Collaborative Innovation Center, Shanghai Jiao Tong University, Shanghai 200240, China
Abstract  Plasma is a significant medium in high-energy density physics since it can hardly be damaged. For some applications such as plasma based backward Raman amplification (BRA), uniform high-density and large-scale plasma channels are required. In the previous experiment, the plasma transverse diameter and density are 50-200 μm and 1-2×1019 cm-3, here we enhance them to 0.8 mm and 8×1019 cm-3, respectively. Moreover, the gradient plasma is investigated in our experiment. A proper plasma gradient can be obtained with suitable pulse energy and delay. The experimental results are useful for plasma physics and nonlinear optics.
Keywords:  plasma channel      laser-induced plasma      plasma measurement      plasma optics  
Received:  19 October 2015      Revised:  09 November 2015      Accepted manuscript online: 
PACS:  52.50.Dg (Plasma sources)  
  52.50.Jm (Plasma production and heating by laser beams (laser-foil, laser-cluster, etc.))  
  52.38.Fz (Laser-induced magnetic fields in plasmas)  
  52.70.Kz (Optical (ultraviolet, visible, infrared) measurements)  
Fund: Project supported by the Development Foundation of the Chinese Academy of Engineering Physics (Grant Nos. 2012A0401019 and 2013A0401019).
Corresponding Authors:  Zhaohui Wu     E-mail:  wuzhaohui20050@163.com

Cite this article: 

Yanlei Zuo(左言磊), Xiaofeng Wei(魏晓峰), Kainan Zhou(周凯南), Xiaoming Zeng(曾小明),Jingqin Su(粟敬钦), Zhihong Jiao(焦志宏), Na Xie(谢娜), Zhaohui Wu(吴朝辉) Enhanced laser-induced plasma channels in air 2016 Chin. Phys. B 25 035203

[1] Ehrlich Y, Cohen C, Zigler A, Krall J, Sprangle S and Esarey E 1996 Phys. Rev. Lett. 77 4486
[2] Pai C H, Lin M W, Ha L C, Tsou S T, Chu H H, Lin J Y and Chen S Y 2008 Phys. Rev. Lett. 101 065005
[3] Shkolnikov P L, Lago A and Kaplan A E 1994 Phys. Rev. A 77 4461
[4] Kuo C C, Pai C H, Lin M W, Lee K H, Lin J Y, Wang J and Chen S Y 2007 Phys. Rev. Lett. 98 033901
[5] Litos M, Adli E, AnW, Clarke C I, Clayton C E, Corde S, Delahaye J P, England R J, Fisher A S, Frederico J, Gessner S, Green S Z, Hogan M J, Joshi C, Lu W, Marsh K A, Mori W B, Muggli P, Vafaei-Najafabadi N, Walz D, White G, Wu Z, Yakimenko V and Yocky G 2014 Nature 515 92
[6] Malkin V M, Shvets G and Fisch N J 1999 Phys. Rev. Lett. 82 4448
[7] Fisch N J, and Malkin V M 2003 Phys. Plasmas. 10 2056
[8] Wang H Y and Huang Z Q 2005 Chin. Phys. 14 2560
[9] Wu Z H, Wei X F, Zuo Y L, Liu L Q, Zhang Z M, Li M, Zhou Y L and Su J Q 2015 Chin. Phys. B 24 014211
[10] Ping Y, Kirwood R K,Wang T L, Clark D S,Wilks S C, Meezan N and Berger R L 2009 Phys. Plasmas. 16 123113
[11] Ping Y, Geltner I and Suckewer 2003 Phys. Rev. E 67 016401
[12] Ping Y, Cheng W F, Suckewer S, Clark D S and Fisch N J 2004 Phys. Rev. Lett. 92 175007
[13] Cheng W F, Avitzour Y, Ping Y and Suckewer S 2005 Phys. Rev. Lett. 94 045003
[14] Ren J, Cheng W, Li S and Suckwer S 2007 Nature Physics 3 732
[15] Ren J, Li S, Morozov A, Suckewer S, Yampolsky N A and Malkin V M 2008 Phys. Plasmas 15 056702
[16] Yampolsky N A and Fisch N J 2011 Phys. Plasmas 18 05611
[17] Malkin V M, Shvets G and Fisch N J 2000 Phys. Plsamas. 7 2232
[18] Ping Y, Morozov A, Fisch N J and Suckewer S 2002 Phys. Plasmas 9 4756
[19] Buie M J, Pender J T P, Howlloway J P, Vincent T, Ventzek P L G and Brake M L 1996 J. Quant. Spectrosc. Radiat. Transf. 55 231
[20] lvarez R, Pender A and Howlloway M C 2002 Spectrochim. Acta 57 1665
[21] Shuiliang M, Hongming G and Lin W 2008 Appl. Optics 9 1350
[22] Durfee C G, Lynch J and Milchbeerg HM1995 Phys. Plasmas 51 2368
[23] Ping Y, Geltner I and Suckewer S Phys. Plasmas 8 4174
[24] Ping Y 2002 Soft X-ray Lasers and Raman Amplification in Plasmas (Ph. D. thesis, Princeton University)
[25] Toroker Z, Malkin V M, Balakin A A, Fraiman G M and Fisch N J 2012 Phys. Plasmas 19 083110
[26] Trines R M G M, Fiúza F, Bingham R, Fonseca R A, Silva L O, Cairns R A and Norreys P A 2011 Nat. Phys. 7 87
[27] Mourou G A, Fisch N J, Malkin V M, Toroker Z, Khazanov E A, Sergeev A M, Tajima T and Garrec B L 2012 Opt. Commun. 285 720
[28] Margolin L Ya 1999 Quantum Electron. 29 246
[1] Combination of spark discharge and nanoparticle-enhanced laser-induced plasma spectroscopy
Qing-Xue Li(李庆雪), Dan Zhang(张丹), Yuan-Fei Jiang(姜远飞), Su-Yu Li(李苏宇), An-Min Chen(陈安民), and Ming-Xing Jin(金明星). Chin. Phys. B, 2022, 31(8): 085201.
[2] Nonlinear propagation of an intense Laguerre-Gaussian laser pulse in a plasma channel
Mingping Liu(刘明萍), Zhen Zhang(张震), and Suhui Deng(邓素辉). Chin. Phys. B, 2021, 30(5): 055204.
[3] Direct electron acceleration by chirped laser pulse in a cylindrical plasma channel
Yong-Nan Hu(胡永南), Li-Hong Cheng(成丽红), Zheng-Wei Yao(姚征伟), Xiao-Bo Zhang(张小波), Ai-Xia Zhang(张爱霞), Ju-Kui Xue(薛具奎). Chin. Phys. B, 2020, 29(8): 084103.
[4] Damage characteristics of laser plasma shock wave on rear surface of fused silica glass
Xiong Shen(沈雄), Guo-Ying Feng(冯国英), Sheng Jing(景晟), Jing-Hua Han(韩敬华), Ya-Guo Li(李亚国), Kai Liu(刘锴). Chin. Phys. B, 2019, 28(8): 085202.
[5] Electron self-injection and acceleration in a hollow plasma channel driven by ultrashort intense laser pulses
Suhui Deng(邓素辉), Mingping Liu(刘明萍). Chin. Phys. B, 2019, 28(4): 044101.
[6] Laser-driven relativistic electron dynamics in a cylindrical plasma channel
Pan-Fei Geng(耿盼飞), Wen-Juan Lv(吕文娟), Xiao-Liang Li(李晓亮), Rong-An Tang(唐荣安), Ju-Kui Xue(薛具奎). Chin. Phys. B, 2018, 27(3): 035201.
[7] Conditions for laser-induced plasma to effectively remove nano-particles on silicon surfaces
Jinghua Han(韩敬华), Li Luo(罗莉), Yubo Zhang(张玉波), Ruifeng Hu(胡锐峰), Guoying Feng(冯国英). Chin. Phys. B, 2016, 25(9): 095204.
[8] Shadowgraph investigation of plasma shock wave evolution from Al target under 355-nm laser ablation
Liu Tian-Hang (刘天航), Hao Zuo-Qiang (郝作强), Gao Xun (高勋), Liu Ze-Hao (刘泽昊), Lin Jing-Quan (林景全). Chin. Phys. B, 2014, 23(8): 085203.
[9] Mitigation of energetic ion debris from Gd plasma using dual laser pulses and the combined effect with ambient gas
Dou Yin-Ping (窦银萍), Sun Chang-Kai (孙长凯), Liu Chao-Zhi (刘超智), Gao Jian (高健), Hao Zuo-Qiang (郝作强), Lin Jing-Quan (林景全). Chin. Phys. B, 2014, 23(7): 075202.
[10] Radio-frequency compressed electron pulse-width characterization by cross-correlation between electron bunches and laser-induced plasma
Li Jing (李静), Pei Min-Jie (裴敏洁), Qi Da-Long (齐大龙), Qi Ying-Peng (齐迎朋), Yang Yan (杨岩), Sun Zhen-Rong (孙真荣). Chin. Phys. B, 2014, 23(12): 124209.
[11] Generation of third harmonic emission in propagation of femtosecond laser pulses in air
Xi Ting-Ting(奚婷婷), Zhang Jie(张杰), Lu Xin(鲁欣), Hao Zuo-Qiang(郝作强), Yang Hui(杨辉), Dong Quan-Li(董全力), and Wu Hui-Chun(武慧春). Chin. Phys. B, 2006, 15(9): 2025-2029.
No Suggested Reading articles found!