Optimized terahertz generation in BNA organic crystals with chirped Ti:sapphire laser pulses

Author:

Chen Hao12ORCID,Liao Guo-Qian123ORCID,Wu Hong-Yuan12,Lei Hong-Yi3,Ruan Jie-Ya12,Wei Yan-Yu12,Li Yi-Fei1,Wang Jin-Guang1ORCID,Sun Fang-Zheng12,Wang Xuan13,Lu Xin123,Li Yu-Tong123

Affiliation:

1. Institute of Physics, Chinese Academy of Sciences

2. University of Chinese Academy of Sciences

3. Songshan Lake Materials Laboratory

Abstract

We report on the efficient generation of intense terahertz radiation from the organic crystal N-benzyl-2-methyl-4-nitroaniline pumped by chirped Ti:sapphire femtosecond laser pulses. The THz energy and spectrum as a function of the pump fluence and duration of the chirped laser pulses are studied systematically. For the appropriate positively chirped pump pulses, a significant boost in the THz generation efficiency by a factor of around 2.5 is achieved, and the enhancement of high-frequency components (>1 THz) shortens the THz pulse duration. Via complete characterization of THz properties and transmitted laser spectra, this nonlinear behavior is attributed to the extended effective interaction length for phase matching as a result of the self-phase modulation of the intense pump laser pulses. Numerical calculations well reproduce the experimental observation. Our results demonstrate a robust, efficient, strong-field (up to several MV/cm) THz source using the common sub-10 mJ and sub-100 fs Ti:sapphire laser systems without optical parametric amplifiers.

Funder

National Natural Science Foundation of China

National Key Research and Development Program of China

Strategic Priority Research Program of the Chinese Academy of Sciences

CAS Project for Young Scientists in Basic Research

CAS Youth Interdisciplinary Team

Publisher

Optica Publishing Group

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