Combined effect of plasma density ramp and wiggler magnetic field on self-focusing of q-Gaussian laser beam in underdense plasma
Author:
Publisher
Springer Science and Business Media LLC
Subject
Atomic and Molecular Physics, and Optics
Link
https://link.springer.com/content/pdf/10.1007/s12596-023-01359-8.pdf
Reference30 articles.
1. N. Gupta, R. Johari, S. Kumar, S. Bhardwaj, S. Choudhry, Optical guiding of q-Gaussian laser beams in radial density plasma channel created by two prepulses: ignitor and heater. J. Opt. 51, 749–760 (2022)
2. K. Khandale, P. Takale, S. Patil, T. Urunkar, A. Valkunde, S. Patil, M. Takale, Influence of critical beam power on propagation dynamics of q-Gaussian laser beams in isotropic collisional plasma. J. Phys. Conf. Ser. 2426, 012005 (2023)
3. K. Walia, Self-focusing of q-Gaussian beam in unmagnetized plasma and its impact on second harmonic generation. Optik 277, 170681 (2023)
4. N. Kant, A. Singh, V. Thakur, Second-harmonic generation by a chirped laser pulse with the exponential density ramp profile in the presence of a planar magnetostatic wiggler. Laser Part Beams 37, 442–447 (2019)
5. S. Kumar, S. Vij, N. Kant, V. Thakur, Nonlinear interaction of amplitude-modulated gaussian laser beam with anharmonic magnetized and rippled CNTs: THz generation. Braz. J. Phys. 53, 37 (2023)
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1. Investigation of self-focusing of Gaussian laser beams within magnetized plasma via source-dependent expansion method;Physics of Plasmas;2024-08-01
2. Effect of critical beam power on self-focusing, self-trapping and defocusing of q-Gaussian laser beams in collisional plasma;Journal of Optics;2024-04-01
3. Magnetically enhanced third harmonic generation using q-Gaussian laser beam in plasma;Journal of Optics;2023-12-24
4. Enhanced self-focusing of q-Gaussian laser beam in underdense plasma under the combined effect of density ramp and axial magnetic field;Journal of Optics;2023-11-20
5. The effect of density ramp on self-focusing of q-Gaussian laser beam in magnetized plasma;Journal of Optics;2023-11-15
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