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首页> 外文期刊>Journal of Lightwave Technology >Fully Frequency-Locked Multiheterodyne Architecture for Remote Optical Frequency Comb Rapid Detection
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Fully Frequency-Locked Multiheterodyne Architecture for Remote Optical Frequency Comb Rapid Detection

机译:用于远程光学频率梳快速检测的全锁频多外差架构

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摘要

In this paper, a new approach to optical frequency comb (OFC) detection based on a multiheterodyne arrangement is presented. The architecture relies on optical injection locking as a mechanism to induce coherence between an incoming remote OFC and a local oscillator comb with slightly different repetition frequency to retrieve the information encoded in the former. An additional RF locking technique between combs is also implemented, cancelling any frequency drifts and ensuring the temporal stability of the detection scheme while preserving its autonomy from any remote comb. The detection system is validated by recording the coherently averaged transmission spectra of a fibre Bragg grating sensor imprinted into an electro-optic comb around 1540 nm within 100 μs integration time. While maintaining the range of advantages of dual-comb architectures, such as simultaneous access to manifold spectral points, high resolution, and ultrafast measurement times, the presented system holds promise for being employed as a remote comb detector for different field applications.
机译:本文提出了一种基于多外差结构的光频率梳(OFC)检测新方法。该体系结构依赖于光注入锁定,作为一种机制来在传入的远程OFC和本地振荡器梳之间引入相干性,其重复频率略有不同,以检索前者中编码的信息。还实现了梳齿之间的附加RF锁定技术,可消除任何频率漂移并确保检测方案的时间稳定性,同时保留其对任何远程梳齿的自主性。通过记录在100μs积分时间内在1540 nm附近压印到电光梳中的光纤布拉格光栅传感器的相干平均透射光谱来验证检测系统的有效性。在保持双梳状结构优点的范围内,例如同时访问多个光谱点,高分辨率和超快的测量时间,提出的系统有望被用作不同领域应用的远程梳状检测器。

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