论文标题

同时$χ^{(2)} $ - $χ^{(2)} $和$χ^{(2)} $ - $χ^{(3)} $非线性过程在薄膜lithate Microcavity中生成

Simultaneous $ χ^{(2)} $- $ χ^{(2)} $ and $ χ^{(2)} $-$ χ^{(3)} $ nonlinear processes generation in thin film lithium tantalate microcavity

论文作者

Yan, Xiongshuo, Xue, Miao, Wu, Jiangwei, Ge, Rui, Yuan, Tingge, Chen, Yuping, Chen, Xianfeng

论文摘要

芯片上有效的非线性功能有助于升级光子综合电路(图片)的实用性和性能,尤其是对于广泛的经典和量子应用,例如可调的相干辐射,光学频率转换,光谱频率转换,光谱,量子科学等。由于其出色的光学特性,电声音,声学设备。在这里,我们在电信(10 $^{6} $)和可见的(10 $^{6} $)中,在绝缘子(LTOI)微型企业上制造了Z切割锂,并通过优化制造方法(10 $^{6} $)和可见(10 $^{5} $)。随着LTOI微电极的Q因子的增加,我们可以在腔体中获得更高的泵光强度,这很容易获得更光学的非线性效应。通过利用相互作用波和输入高泵功率的模式相匹配,我们在实验上观察到片上近红外的光线,可见(红色,绿色)和紫外线(UV)(UV),基于微孔子的$χ^{(2)} - χ^{(2)} - χ^{(2)} $,$,$χ^{(2) $χ^{(2)} $非线性过程,例如级联的四波混合(CFWM),级联的总频率生成(CSFG),第三次谐波生成(THG),第二谐波生成(SHG)。据认为,LTOI可以支持各种芯片光学非线性过程,这些过程预示着其在综合非线性光子学中的新应用潜力。

On-chip efficient nonlinear functions are instrumental in escalating the utilities and performance of photonic integrated circuits (PICs), especially for a wide range of classical and quantum applications, such as tunable coherent radiation, optical frequency conversion, spectroscopy, quantum science, etc. Lithium tantalate (LT) has been widely used in nonlinear wavelength converters, surface acoustic wave resonators, and electro-optic, acoustic-optic devices owing to its excellent optical properties. Here, we fabricated a Z-cut lithium tantalate on insulator (LTOI) microdisk with high quality(Q) factors in both telecom (10$^{6}$) and visible (10$^{5}$) bands by optimizing the fabrication. With the Q factor of the LTOI microdisk increasing, we can obtain higher pump light intensity in the cavity which is beneficial to get more optical nonlinear effect easily. By making use of the mode phase matching of interacting waves and inputting high pump power, we experimentally observed on-chip near-infrared light, visible (red, green), and ultraviolet (UV) from microresonator-based $ χ^{(2)}-χ^{(2)}$, $ χ^{(2)}-χ^{(3)}$, and $χ^{(2)}$ nonlinear processes such as cascaded four-wave mixing (cFWM), cascaded sum-frequency generation (cSFG), third harmonic generation (THG), second harmonic generation (SHG). It is believed that the LTOI can support a variety of on-chip optical nonlinear processes, which heralds its new application potential in integrated nonlinear photonics.

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