有效和波长调节的第二和生成向绿色差距
Zhiquan Yuan1, Jinhao Ge1, Peng Liu1
1T. J. Watson Laboratory of Applied Physics, California Institute of Technology, Pasadena, CA 91125, USA.
Science advances
|July 2, 2025
概括
研究人员使用化微振解器开发了一种可调节的绿色激光. 这项技术通过第二和生成 (SHG) 高效地产生绿色光线,解决了激光应用中的"绿色差距".
科学领域:
- 光子学和光学工程的工程.
- 材料科学 材料科学 材料科学
- 半导体物理 半导体物理
背景情况:
- 紧而高效的可见激光源对于许多应用非常重要.
- 传统的半导体激光器难以产生高亮度的绿色光线,从而创造出一种"绿色光线".
- 波长间隙是波长间隙的时间.
- 在覆盖范围.
- 第二和生成 (SHG) 是一种可行的方法,可以从近红外源有效地产生可见光.
研究的目的:
- 在绿色频谱中展示高效和可调的第二和生成 (SHG).
- 为了利用高Q化 (Si3N4) 微共振器在芯片上发光.
- 探索可重新配置的网格特性,用于波长调节.
主要方法:
- 制造一个高Q化 (Si3N4) 微共振器.
- 实施第二和生成 (SHG) 用于绿灯生产.
- 通过光效应诱导空间电荷格子进行调.
主要成果:
- 在芯片上发电的绿色电力高达5.3毫瓦.
- 实现了每瓦141%的转换效率 (绝对7.9%).
- 使用可重新配置的网格,证明了在2.6太赫兹以上的灵活波长调节.
结论:
- 化 (Si3N4) 微复原器是芯片上可调节的绿色光源的有希望的平台.
- 光效应可以动态控制波长调整的格子特性.
- 这项工作解决了可见激光技术中"绿色差距"的挑战.
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