Saturday, March 9, 2019

Abstract-Enhanced terahertz radiation by an intense femtosecond laser field assisted with sub-cycle pulses



Xiao-Fang Shu, Cheng-Xin Yu, and Jie Liu

Fig. 1 (a) The profiles of the driving, the proposed sub-cycle and the synthesized pulses, and the calculated ionization probability is given in black solid line.; (b) The photocurrents JE and JC are presented in the arbitrary unit (arb.u.).

https://www.osapublishing.org/oe/abstract.cfm?uri=oe-27-5-7751

In this work, we theoretically investigate the enhanced Terahertz (THz) radiation by an intense laser pulse assisted with sub-cycle pulses (SCP) in the framework of quantum theory. By numerically solving the Schrödinger equation, the production and the dynamics of ionized electrons are analyzed. The simulations show that the SCP plays different roles for different time delays in the generation of THz radiation, such as increasing the production of the ionized electrons and manipulating their trajectories. The time-frequency analysis of the THz radiation is also carried out, which indicates that the THz radiation mainly occurs where the SCP is launched, and the THz radiation mainly comes from the formation of the asymmetric electric current. Finally, the scheme of dual sub-cycle pulses is studied, and we find that the THz radiations can constructively or destructively interfere, which leads to the formation of the streaky structures of radiation spectra.
© 2019 Optical Society of America under the terms of the OSA Open Access Publishing Agreement

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