Wang Yuye, Tang Longhuang, Xu Degang, Yan Chao, He Yixin, Shi Jia, Yan Dexian, Liu Hongxiang, Nie Meitong, Feng Jiachen, Yao Jianquan
Opt Express. 2017 Apr 17;25(8):8926-8936. doi: 10.1364/OE.25.008926.
A widely tunable, high-energy terahertz wave parametric oscillator based on 1 mol. % MgO-doped near-stoichiometric LiNbO crystal has been demonstrated with 1064 nm nanosecond pulsed laser pumping. The tunable range of 1.16 to 4.64 THz was achieved. The maximum THz wave output energy of 17.49 μJ was obtained at 1.88 THz under the pump energy of 165 mJ/pulse, corresponding to the THz wave conversion efficiency of 1.06 × 10 and the photon conversion efficiency of 1.59%, respectively. Moreover, under the same experimental conditions, the THz output energy of TPO with MgO:SLN crystal was about 2.75 times larger than that obtained from the MgO:CLN TPO at 1.60 THz. Based on the theoretical analysis, the THz energy enhancement mechanism in the MgO:SLN TPO was clarified to originate from its larger Raman scattering cross section and smaller absorption coefficient.
基于1摩尔%氧化镁掺杂的近化学计量比铌酸锂晶体,在1064纳米纳秒脉冲激光泵浦下,实现了一种宽可调谐、高能太赫兹波参量振荡器。获得了1.16至4.64太赫兹的可调谐范围。在泵浦能量为165毫焦/脉冲的情况下,在1.88太赫兹处获得了17.49微焦的最大太赫兹波输出能量,对应的太赫兹波转换效率为1.06×10,光子转换效率为1.59%。此外,在相同实验条件下,在1.60太赫兹处,氧化镁:近化学计量比铌酸锂晶体参量振荡器的太赫兹输出能量比氧化镁:同成分铌酸锂晶体参量振荡器的太赫兹输出能量大2.75倍左右。基于理论分析,阐明了氧化镁:近化学计量比铌酸锂晶体参量振荡器中太赫兹能量增强机制源于其较大的拉曼散射截面和较小的吸收系数。