论文标题

二阶非线性光子学的相干光钙化效应

Coherent Photogalvanic Effect for Second-Order Nonlinear Photonics

论文作者

Yakar, Ozan, Nitiss, Edgars, Hu, Jianqi, Brès, Camille-Sophie

论文摘要

相干的光藻效应导致在相干梁的吸收干扰下产生电流,并允许铭文的空间充电光栅,从而导致有效的二阶敏感性($χ^{(2)} $)。铭刻的光栅会自动导致干扰光束之间的准阶段匹配。已经进行了理论和实验研究,主要集中于第二次谐波产生的退化病例,显示出明显的转化效率提高。但是,该理论与实验之间的联系尚未完全确定,因此对于给定材料平台的一般准则和可实现的转换效率仍不清楚。在这项工作中,我们理论上分析了光学波导中相干光钙化效应的现象学模型。我们的模型预测了非分类总和产生的准阶段匹配光栅的存在,这是第一次实验确认。此外,我们严格地制定了连贯的光藻过程中空间充电光栅铭文的时间动力学。基于开发的理论方程,用于空间荷兰形成的时间动力学,我们提取了管理实验平台化学计量计量硅硝化物的过程的材料参数。获得的结果提供了比较不同平台的性能和潜力的基础。这项工作不仅补充了连贯的照相效应的理论,而且还使我们能够确定$χ^{(2)} $ ghastings铭文的关键参数和限制因素。

The coherent photogalvanic effect leads to the generation of a current under the absorption interference of coherent beams and allows for the inscription of space-charge gratings leading to an effective second-order susceptibility ($χ^{(2)}$). The inscribed grating automatically results in quasi-phase-matching between the interfering beams. Theoretical and experimental studies have been carried out, mostly focusing on the degenerate case of second-harmonic generation, showing significant conversion efficiency enhancements. However, the link between the theory and experiment was not fully established such that general guidelines and achievable conversion efficiency for a given material platform are still unclear. In this work, we theoretically analyze the phenomenological model of coherent photogalvanic effect in optical waveguides. Our model predicts the existence of non-degenerate sum-frequency generation quasi-phase-matching gratings, which is confirmed experimentally for the first time. In addition, we rigorously formulate the time dynamics of the space-charge grating inscription in coherent photogalvanic process. Based on developed theoretical equations for the time dynamics of the space-charge grating formation, we extract the material parameters governing the process for our experimental platform, stoichiometric silicon nitride. The results obtained provides a basis to compare the performances and potentials of different platforms. This work not only supplements the theory of coherent photogalvanic effect, but also enables us to identify critical parameters and limiting factors for the inscription of $χ^{(2)}$ gratings.

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