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Experimental demonstration of a reconfigurable silicon thermo-optical device based on spectral tuning of ring resonators for optical signal processing

机译:基于环形谐振器频谱调谐的可重构硅热光器件的实验演示,用于光信号处理

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摘要

We have experimentally demonstrated a reconfigurable silicon thermo-optical device able to tailor its intrinsic spectral optical response by means of the thermo-optical control of individual and uncoupled resonant modes of micro-ring resonators. Preliminarily results show that the device’s optical response can be tailored to build up distinct and reconfigurable logic levels for optical signal processing, as well as control of overall figures of merit, such as free-spectral-range, extinction ratio and 3dB bandwidth. In addition, the micro-heaters on top of the ring resonators are able to tune the resonant wavelength with efficiency of 0.25 nm/mW within a range of up to 10 nm, as well as able to switch the resonant wavelength within fall and rise time of 15 μs.
机译:我们已经通过实验证明了一种可重配置的硅热光学器件,该器件能够通过对微环谐振器的单个和未耦合谐振模式进行热光学控制来调整其固有光谱光学响应。初步结果表明,该设备的光响应可以进行调整,以建立用于光信号处理的独特且可重新配置的逻辑电平,以及对总体性能指标的控制,例如自由光谱范围,消光比和3dB带宽。此外,环形谐振器顶部的微加热器能够在高达10 nm的范围内以0.25 nm / mW的效率调谐谐振波长,并能够在下降和上升时间内切换谐振波长15μs

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