中国物理B ›› 2022, Vol. 31 ›› Issue (4): 44205-044205.doi: 10.1088/1674-1056/ac29b4
Zhong-Yang Li(李忠洋)1,†, Jia Zhao(赵佳)1, Sheng Yuan(袁胜)1, Bin-Zhe Jiao(焦彬哲)1, Pi-Bin Bing(邴丕彬)1, Hong-Tao Zhang(张红涛)1, Zhi-Liang Chen(陈治良)1, Lian Tan(谭联)1, and Jian-Quan Yao(姚建铨)2
Zhong-Yang Li(李忠洋)1,†, Jia Zhao(赵佳)1, Sheng Yuan(袁胜)1, Bin-Zhe Jiao(焦彬哲)1, Pi-Bin Bing(邴丕彬)1, Hong-Tao Zhang(张红涛)1, Zhi-Liang Chen(陈治良)1, Lian Tan(谭联)1, and Jian-Quan Yao(姚建铨)2
摘要: A new scheme which generates multi-frequency terahertz (THz) waves from planar waveguide by the optimized cascaded difference frequency generation (OCDFG) is proposed. A THz wave with frequency ωT1 is generated by the OCDFG with two infrared pump waves, and simultaneously a series of cascaded optical waves with a frequency interval ωT1 is generated. The THz wave with a frequency of M-times ωT1 is generated by mixing the m-th-order and the (m+M)-th-order cascaded optical wave. The phase mismatch distributions of cascaded difference frequency generation (CDFG) are modulated by changing the thickness of planar waveguide step by step, thereby satisfying the phase-matching condition from first-order to high-order cascaded Stokes process step by step. As a result, the intensity of THz wave can be enhanced and modulated by controlling the cascading order of OCDFG.
中图分类号: (Optical parametric oscillators and amplifiers)