论文标题
光子芯片上的热诱导透明度
Thermo-Optically Induced Transparency on a photonic chip
论文作者
论文摘要
通过适当调整的相干电磁场控制培养基的光学响应在许多潜在应用中,从全光调节器到光学存储设备都非常相关。特别是,电磁诱导的透明度(EIT)是一种已建立的现象,在该现象中,破坏性量子干扰在吸收线周围狭窄的频谱范围内形成了一个透明窗口,从而又可以缓慢且最终由于异常的折射式折射率分散而停止光线。在这里,我们报告了在室温下强烈驱动的硅光子晶体谐振器中诱发透明度的新形式或弱探头梁的扩增。该效果基于在非线性光学腔中诱导的振荡温度场,并且在独立于原子或机械共振的同时,再现了EIT的许多关键特征。这样的热诱导的透明度(TOIT)将允许在集成的光子平台中实现EIT-Analogues的多功能,以几乎任意的兴趣波长,室温和实用,低成本和可扩展系统的方式实现。
Controlling the optical response of a medium through suitably tuned coherent electromagnetic fields is highly relevant in a number of potential applications, from all-optical modulators to optical storage devices. In particular, electromagnetically induced transparency (EIT) is an established phenomenon in which destructive quantum interference creates a transparency window over a narrow spectral range around an absorption line, which, in turn, allows to slow and ultimately stop light due to the anomalous refractive index dispersion. Here we report on the observation of a new form of either induced transparency or amplification of a weak probe beam in a strongly driven silicon photonic crystal resonator at room temperature. The effect is based on the oscillating temperature field induced in a nonlinear optical cavity, and it reproduces many of the key features of EIT while being independent of either atomic or mechanical resonances. Such thermo-optically induced transparency (TOIT) will allow a versatile implementation of EIT-analogues in an integrated photonic platform, at almost arbitrary wavelength of interest, room temperature and in a practical, low cost and scalable system.