Two color laser self focusing and terahertz generation in multi-ion species plasma

被引:16
作者
Ahmad, Nafis [1 ]
Mahmoud, Saleh T. [1 ]
Purohit, Gunjan [2 ]
Khan, Firoz [3 ]
机构
[1] UAE Univ, Coll Sci, Dept Phys, POB 15551, Al Ain, U Arab Emirates
[2] DAV Postgrad Coll, Laser Plasma Computat Lab, Dept Phys, Dehra Dun, Uttarakhand, India
[3] Daegu Gyeongbuk Inst Sci & Technol, Smart Text Convergence Res Grp, 50-1 Sang Ri, Dalseong Gun 42988, Daegu, South Korea
来源
OPTIK | 2018年 / 158卷
关键词
Laser plasma interaction; Cross focusing; Terahertz generation; PARTIALLY STRIPPED PLASMAS; PULSES; WAVES; PROPAGATION; STABILITY; IGNITION;
D O I
10.1016/j.ijleo.2017.12.152
中图分类号
O43 [光学];
学科分类号
070207 ; 0803 ;
摘要
An analytical formalism of self focusing of two co-propagating laser beams, fundamental (omega(1)) and close to second harmonic (omega(2) approximate to 2 omega(1)), in a multi-ion species plasma and resonant terahertz radiation generation has been developed. The nonlinearity arises due to ponderomotive force on electrons by both the beams and subsequent ambipolar redistribution of the plasma. The ions of higher charged state are strongly depleted from the axial region due to space charge field effects and electron charge is largely compensated by the ions of lower charge. When the power of the strong beam equals the critical power for its self-guiding, the plasma provides an oscillatory waveguide for the weak beam: the weak beam shrinks and rebounds when its frequency is lower than that of the strong beam, and it swallows and rebounds when the frequency is higher. When both beams are strong the nonlinearities have cumulative effect on both the beams. The cross coupling of the beams gives rise to nonlinear current giving rise to terahertz radiation at omega = omega(2) - 2 omega(1) frequency. An axial density ripple aids phase matching and gives rise to higher power conversion efficiency. Self focusing leads to enhancement in conversion efficiency. (C) 2017 Elsevier GmbH. All rights reserved.
引用
收藏
页码:1533 / 1542
页数:10
相关论文
共 29 条
[1]  
Andreev NE, 1996, PLASMA PHYS REP, V22, P379
[2]   DYNAMICS OF PONDEROMOTIVE SELF-FOCUSING AND PERIODIC BURSTS OF STIMULATED BRILLOUIN BACKSCATTERING IN PLASMAS [J].
ANDREEV, NE ;
GORBUNOV, LM ;
TARAKANOV, SV ;
ZYKOV, AI .
PHYSICS OF FLUIDS B-PLASMA PHYSICS, 1993, 5 (07) :1986-1999
[3]   Basic concepts in plasma accelerators [J].
Bingham, R .
PHILOSOPHICAL TRANSACTIONS OF THE ROYAL SOCIETY A-MATHEMATICAL PHYSICAL AND ENGINEERING SCIENCES, 2006, 364 (1840) :559-575
[4]   Evidence of enhanced effective hot electron temperatures in ultraintense laser-solid interactions due to reflexing [J].
Chen, H ;
Wilks, SC .
LASER AND PARTICLE BEAMS, 2005, 23 (04) :411-416
[5]   Intense terahertz pulses by four-wave rectification in air [J].
Cook, DJ ;
Hochstrasser, RM .
OPTICS LETTERS, 2000, 25 (16) :1210-1212
[6]   Self-focusing and guiding of short laser pulses in ionizing gases and plasmas [J].
Esarey, E ;
Sprangle, P ;
Krall, J ;
Ting, A .
IEEE JOURNAL OF QUANTUM ELECTRONICS, 1997, 33 (11) :1879-1914
[7]  
Esarey E., 1938, APPL PHYS LETT, V53, P1266
[8]   THE SELF-TRAPPING OF LIGHT WAVES BY BEAT-WAVE EXCITATION [J].
GIBBON, P .
PHYSICS OF FLUIDS B-PLASMA PHYSICS, 1990, 2 (09) :2196-2208
[9]   Intense ultrashort terahertz pulses: generation and applications [J].
Hoffmann, Matthias C. ;
Fueloep, Jozsef Andras .
JOURNAL OF PHYSICS D-APPLIED PHYSICS, 2011, 44 (08)
[10]   All-optical control of nonlinear focusing of laser beams in plasma beat wave accelerator [J].
Kalmykov, Serguei ;
Yi, S. Austin ;
Shvets, Gennady .
PLASMA PHYSICS AND CONTROLLED FUSION, 2009, 51 (02)