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通过级联离散级实现的超长连续可调参量延迟

Ultralong continuously tunable parametric delays via a cascading discrete stage.

作者信息

Dai Yitang, Okawachi Yoshitomo, Turner-Foster Amy C, Lipson Michal, Gaeta Alexander L, Xu Chris

机构信息

School of Applied and Engineering Physics, Cornell University, Ithaca, NY 14853, USA.

出版信息

Opt Express. 2010 Jan 4;18(1):333-9. doi: 10.1364/OE.18.000333.

Abstract

We report experimental demonstration of an all-optical continuously tunable delay line based on parametric mixing with a total delay range of 7.34 mus. The bit-error rate performance of the delay line was characterized for a 10-Gb/s NRZ data channel. This result is enabled by cascading a discrete delay line that consists of 16 wavelength-dependent delays and a continuously tunable delay stage. Four wavelength conversion stages based on four-wave mixing in silicon waveguides were performed in order to achieve wavelength-preserving operation. The wavelength-optimized optical phase conjugation scheme employed in the delay line is capable of minimizing the residual dispersion for the entire tuning range.

摘要

我们报道了基于参量混频的全光连续可调延迟线的实验演示,其总延迟范围为7.34微秒。针对10 Gb/s非归零(NRZ)数据通道对该延迟线的误码率性能进行了表征。此结果是通过级联一个由16个波长相关延迟组成的离散延迟线和一个连续可调延迟阶段实现的。为了实现波长保持操作,在硅波导中进行了基于四波混频的四个波长转换阶段。该延迟线采用的波长优化光相位共轭方案能够在整个调谐范围内将残余色散降至最低。

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