Lin Jintian, Yao Ni, Hao Zhenzhong, Zhang Jianhao, Mao Wenbo, Wang Min, Chu Wei, Wu Rongbo, Fang Zhiwei, Qiao Lingling, Fang Wei, Bo Fang, Cheng Ya
State Key Laboratory of High Field Laser Physics, Shanghai Institute of Optics and Fine Mechanics, Chinese Academy of Sciences, Shanghai 201800, China.
State Key Laboratory of Modern Optical Instrumentation, College of Optical Science and Engineering, Zhejiang University, Hangzhou 310027, China.
Phys Rev Lett. 2019 May 3;122(17):173903. doi: 10.1103/PhysRevLett.122.173903.
We reveal a unique broadband natural quasi-phase-matching (QPM) mechanism underlying an observation of highly efficient second- and third-order harmonic generation at multiple wavelengths in an x-cut lithium niobate (LN) microdisk resonator. For light waves in the transverse-electric mode propagating along the circumference of the microdisk, the effective nonlinear optical coefficients naturally oscillate periodically to change both the sign and magnitude, facilitating QPM without the necessity of domain engineering in the micrometer-scale LN disk. The second-harmonic and cascaded third-harmonic waves are simultaneously generated with normalized conversion efficiencies as high as 9.9%/mW and 1.05%/mW^{2}, respectively, thanks to the utilization of the highest nonlinear coefficient d_{33} of LN. The high efficiency achieved with the microdisk of a diameter of ∼30 μm is beneficial for realizing high-density integration of nonlinear photonic devices such as wavelength convertors and entangled photon sources.
我们揭示了一种独特的宽带自然准相位匹配(QPM)机制,该机制是在x切铌酸锂(LN)微盘谐振器中多个波长处高效二次和三次谐波产生的观测结果的基础。对于沿微盘圆周传播的横向电模式的光波,有效非线性光学系数自然地周期性振荡,从而改变符号和大小,无需在微米级LN盘中进行畴工程即可促进QPM。由于利用了LN的最高非线性系数d33,二次谐波和级联三次谐波同时产生,归一化转换效率分别高达9.9%/mW和1.05%/mW²。直径约为30μm的微盘实现的高效率有利于实现诸如波长转换器和纠缠光子源等非线性光子器件的高密度集成。