Effect of chirp parameter on the second harmonic efficiency in relativistic super-Gaussian laser-plasma interaction

被引:0
作者
Sara Sohrabi
Saeid Jelvani
Katayoon Samavati
Laleh Farhang Matin
机构
[1] North Tehran Branch,Department of Physics
[2] Islamic Azad University,Photonics and Quantum Technologies Research School
[3] Nuclear Science and Technology Research Institute,undefined
来源
Optical and Quantum Electronics | 2023年 / 55卷
关键词
Chirped laser pulse; Second harmonic efficiency; Under-dense plasma; Super-Gaussian laser beam;
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摘要
In this paper, a homogeneous, under-dense plasma channel was subjected to an interaction with a chirped super-Gaussian laser beam. We assume that the plasma already existed. The plasma electron velocity and density variance have been obtained in the relativistic regime. We derived the second harmonic efficiency that depends on normalized laser propagation distance in plasma by solving the wave equation under W–K–B (Wentzel–Kramers–Brillouin) approximation. The influence of different kinds of laser chirp parameters is examined on the second harmonic efficiency. The second harmonic efficiency has been plotted against the ratio of the plasma frequency to the initial laser frequency and normalized laser propagation distance in the plasma channel. The effects of positive and negative chirp parameters on second harmonic efficiency are compared with non-chirped laser pulses in the maximum value. The maximum value of second harmonic efficiency depends on the laser distance propagation and chirp parameter. Also, the positive chirp is more impressive than other kinds of chirping.
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[1]  
Bingham R(1992)Relativistic Langmuir waves generated by ultra-short pulse lasers Plasma Phys Controll Fus 34 4-119
[2]  
de Angelis U(1961)Generation of optical harmonics Phys. Rev. Lett. 7 118-84
[3]  
Amin MR(2022)Theoretical investigation of effective parameters on the second harmonic generation efficiency in AgGaSe Iran J Appl Phys 12 76-516
[4]  
Cairns RA(2012) crystal Laser Part. Beams 30 509-1690
[5]  
Mcnamara B(2015)Relativistic self-focusing of super-Gaussian laser beam in plasma with transverse magnetic field Optik. 126 1683-196
[6]  
Franken PA(2003)Self-focusing of super-Gaussian laser beam in magnetized plasma under relativistic and ponderomotive regime Phys Rev Lett. 90 215001-310
[7]  
Hill AE(2019)Asymmetric Self-Phase modulation and compression of short laser pulses in plasma channels Laser Part. Beams 37 184-468
[8]  
Peters CW(2021)Second harmonic generation of q-Gaussian laser beam in plasma channel created by ignitor heater technique NLOQO. 53 291-61
[9]  
Weinreich G(2020)Optical second and third harmonic generation of laser beams in nonlinear media: a review J Opt. 49 455-3476
[10]  
Ghadimimehr M(2021)Generation of second harmonics of self-focused quadruple-Gaussian laser beams in collisional plasmas with density ramp Opt. Quant. Electron. 53 193-11932