基于可调谐耦合和波长稳定的赛道谐振腔的级联可调谐光延迟线

S. G. Hailu, San-Liang Lee
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引用次数: 2

摘要

对于光传感或生物医学传感,光源通常具有稳定且窄的线宽,可调谐光延迟线(ODL)的设计规则可能与光通信和缓冲的ODL不同。本文提出了一种通过推拉操作来稳定谐振波长的新方法来调谐基于赛道谐振器的ODL。通过考虑热调谐效应和整个集成器件的光子特性的全器件仿真,验证了可调谐odl的特性。在简单的赛道谐振器中,通过改变谐振器的耦合系数可以简单地调谐群延迟,而通过调谐赛道环路可以稳定波长。几百皮秒的调谐是可以实现的,一个非常紧凑的设备和小的功耗。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Cascaded Tunable Optical Delay Line based on a Racetrack Resonator with Tunable Coupling and Stable Wavelength
For optical sensing or biomedical sensing where the light source usually has a stable and narrow linewidth, the design rule of the tunable optical delay line (ODL) can be different from the ODLs for optical communications and buffering. We present here a novel way to tune a racetrack resonator-based ODL by push–pull operation to stabilize the resonant wavelength. Full device simulation that accounts for the thermal tuning effect and the photonic characteristics of the whole integrated device is conducted to verify the characteristics of the tunable ODLs. With the simple racetrack resonator, the group delay can simply be tuned by changing the coupling coefficient of the resonator while the wavelength is stabilized by tuning the racetrack loop. A tuning of hundreds of picoseconds is achievable with a very compact device and small power consumption.
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