936
Views
4
CrossRef citations to date
0
Altmetric
Research Articles

Strong Terahertz radiation generation via wakefield in collisional plasma

, ORCID Icon & ORCID Icon
Pages 1279-1287 | Received 19 May 2020, Accepted 26 Aug 2020, Published online: 11 Sep 2020

References

  • Deutsch C, Furukaw H, Mima K, et al. Focusing of Hermite-cosh-Gaussian laser beams in collisionless magnetoplasma. Phys. Rev. Lett. 1996;77:2883–2486.
  • Teubner U, Gibbon P. High-order harmonics from laser-irradiated plasma surfaces. Rev Mod Phys. 2009;81(2):445.
  • Sullivan A, Hamster H, Gordon SP, et al. Propagation of intense, ultrashort laser pulses in plasmas. Opt Lett. 1994;19(19):1544–1546.
  • Faure J, Rechatin C, Norlin A, et al. Controlled injection and acceleration of electrons in plasma wakefields by colliding laser pulses. Nature. 2006;444(7120):737–739.
  • Jung C. International seminar on advanced accelerator and radiation physics. Synchrotron Radiat News. 2016;29:11–13.
  • Li XF, Yu Q, Gu YJ, et al. Calculating the radiation characteristics of accelerated electrons in laser-plasma interactions. Phys Plasmas. 2016;23(3):033113.
  • Yugami N, Higashiguchi T, Gao H, et al. Experimental observation of radiation from Cherenkov wakes in a magnetized plasma. Phys Rev Lett. 2002;89(6):065003.
  • Starodubtsev M, Krafft C, Lundin B, et al. Resonant Cherenkov emission of whistlers by a modulated electron beam. Phys Plasmas. 1999;6(7):2862–2869.
  • Lemos N, Martins JL, Tsung FS, et al. Self-modulated laser wakefield accelerators as x-ray sources. Plasma Phys Controlled Fusion. 2016;58(3):034018.
  • Umstadter DP. Proceedings of SPIE - The International society for optical engineering, 9590, art. no. 959002. doi:10.1117/12.2196369, (2015).
  • Demir P, Kacar E, Akman E, et al. Proceedings of SPIE - The International Society for Optical Engineering 6703 (2007); P. Demir, E. Kacar, S. K. Bilikmen, X-Ray Lasers 2008 Volume 130 of the series Springer Proceedings in Physics pp 281-287 (2008).
  • Dorranian D, Ghoranneviss M, Starodubtsev M, et al. Generation of short pulse radiation from magnetized wake in gas-jet plasma and laser interaction. Phys Lett A. 2004;331(1-2):77–83.
  • Dorranian D, Ghoranneviss M, Starodubtsev M, et al. Microwave emission from TW-100 fs laser irradiation of gas jet. Laser Part Beams. 2005;23(4):583–596.
  • Manouchehrizadeh M, Dorranian D. Effect of obliqueness of external magnetic field on the characteristics of magnetized plasma wakefield. Journal of Theoretical and Applied Physics. 2013;7(1):43.
  • Starodubtsev M, Kamal-Al-Hassan M, Ito H, et al. Low-frequency sheath instability stimulated by an energetic ion component. Phys Plasmas. 2006;13(1):012103.
  • Mun J, Park S, Yea K. Relationship between Terahertz and X-ray signals generated from laser-Induced plasma on gas targets. J Korean Phys Soc. 2010;56(11):275–278.
  • Nakajima K. Proceedings of the Japan Academy Series B: Physical and Biological Sciences, 91(6); 2015. p. 223-245. doi:10.2183/pjab.91.223,.
  • Carnio BN, Hopmann E, Zawilski KT, et al. Dependence on excitation polarization and crystal orientation for terahertz radiation generation in a BaGa 4 Se 7 crystal. Opt Express. 2020;28(10):15016–15022.
  • Grishkov VE, Uryupin SA. Generation of terahertz radiation in dielectric–metal structure irradiated by a femtosecond laser pulse. Opt Lett. 2020;45(1):41–44.
  • Sharma D, Singh D, Malik HK. Shape-dependent Terahertz radiation generation through nanoparticles. Plasmonics. 2020;15(1):177–187.
  • Guo F, Wang C, Nie T, et al. Generation of highly efficient terahertz radiation in ferromagnetic heterostructures and its application in spintronic terahertz emission microscopy (STEM). OSA Continuum. 2020;3(4):893–902.
  • Malik AK, Malik HK, Kawata S. Investigations on terahertz radiation generated by two superposed femtosecond laser pulses. J Appl Phys. 2010;107(11):113105.
  • Jha P, Saroch A, Mishra RK. Generation of wakefields and terahertz radiation in laser-magnetized plasma interaction. EPL (Europhysics Letters). 2011;94(1):15001.
  • Wang WM, Sheng ZM, Wu HC, et al. Strong terahertz pulse generation by chirped laser pulses in tenuous gases. Opt Express. 2008;16(21):16999–17006.
  • Wang WM, Kawata S, Sheng ZM, et al. Towards gigawatt terahertz emission by few-cycle laser pulses. Phys Plasmas. 2011;18(7):073108.
  • Chen ZY. High field terahertz pulse generation from plasma wakefield driven by tailored laser pulses. Appl Phys Lett. 2013;102(24):241104.
  • Villa F, Anania MP, Bellaveglia M, et al. Laser pulse shaping for high gradient accelerators. Nucl Instrum Methods Phys Res Sect A. 2016;829:446–451.
  • Ostermayr T, Petrovics S, Iqbal K, et al. Laser plasma accelerator driven by a super-Gaussian pulse. J Plasma Phys. 2012;78(4):447–453.
  • Singh D, Malik HK. Enhancement of terahertz emission in magnetized collisional plasma. Plasma Sources Sci Technol. 2015;24(4):045001.
  • Wu HC, Sheng ZM, Dong QL, et al. Powerful terahertz emission from laser wakefields in inhomogeneous magnetized plasmas. Physical Review E. 2007;75(1):016407.
  • Devi L, Malik HK. Resonant third harmonic generation of super-Gaussian laser beam in a rippled density plasma. Journal of Theoretical and Applied Physics. 2018;12(4):265–270.
  • Malik HK, Devi L. Relativistic self focusing and frequency shift of super-Gaussian laser beam in plasma. Results in Physics. 2020. doi:10.1016/j.rinp.2020.103070.
  • Zhidan H, Zhengming S, Wenjun D, et al. Electromagnetic emission from laser wakefields in magnetized underdense plasmas. Plasma Sci Technol. 2012;14(10):874.
  • Singh D, Malik HK. Terahertz generation by mixing of two super-Gaussian laser beams in collisional plasma. Phys Plasmas. 2014;21(8):083105.
  • Hu ZD, Sheng ZM, Ding WJ, et al. Electromagnetic emission from laser wakefields in underdense magnetized plasmas. J Plasma Phys. 2012;78(4):421–427.
  • Singh D, Malik HK, Nishida Y. Magnetic-field–driven Terahertz radiation through wakefield excited by skew-chG lasers in collisional plasma. EPL (Europhysics Letters). 2019;127(5):55001.
  • Malik HK. Generalized treatment of skew-cosh-Gaussian lasers for bifocal terahertz radiation. Phys Lett A. 2020. doi:10.1016/j.physleta.2020.126304.
  • Malik AK, Malik HK, Nishida Y. Terahertz radiation generation by beating of two spatial-Gaussian lasers. Phys Lett A. 2011;375(8):1191–1194.
  • Malik HK. Analytical calculations of wake field generated by microwave pulses in a plasma filled waveguide for electron acceleration. J Appl Phys. 2008;104(5):053308.
  • Aria AK, Malik HK, Singh KP. Excitation of wakefield in a rectangular waveguide: Comparative study with different microwave pulses. Laser Part Beams. 2009;27(1):41–47.
  • Aria AK, Malik HK. Numerical studies on wakefield excited by Gaussian-like microwave pulse in a plasma filled waveguide. Opt Commun. 2009;282(3):423–426.
  • Malik HK, Kumar S, Nishida Y. Electron acceleration by laser produced wake field: pulse shape effect. Opt Commun. 2007;280(2):417–423.
  • Malik L, Escarguel A. Role of the temporal profile of femtosecond lasers of two different colours in holography. EPL (Europhysics Letters). 2019;124(6):64002.
  • Malik L. Dark hollow lasers may be better candidates for holography. Opt Laser Technol. 2020;132:106485.