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用于产生高于100GHz高纯信号的单片集成光子源的光注入锁定

Optical injection locking of monolithically integrated photonic source for generation of high purity signals above 100 GHz.

作者信息

Balakier Katarzyna, Fice Martyn J, van Dijk Frederic, Kervella Gael, Carpintero Guillermo, Seeds Alwyn J, Renaud Cyril C

出版信息

Opt Express. 2014 Dec 1;22(24):29404-12. doi: 10.1364/OE.22.029404.

Abstract

A monolithically integrated photonic source for tuneable mm-wave signal generation has been fabricated. The source consists of 14 active components, i.e. semiconductor lasers, amplifiers and photodetectors, all integrated on a 3 mm(2) InP chip. Heterodyne signals in the range between 85 GHz and 120 GHz with up to -10 dBm output power have been successfully generated. By optically injection locking the integrated lasers to an external optical comb source, high-spectral-purity signals at frequencies >100 GHz have been generated, with phase noise spectral density below -90 dBc/Hz being achieved at offsets from the carrier greater than 10 kHz.

摘要

一种用于产生可调毫米波信号的单片集成光子源已被制造出来。该源由14个有源组件组成,即半导体激光器、放大器和光电探测器,全部集成在一个3平方毫米的磷化铟(InP)芯片上。已成功产生了输出功率高达-10 dBm、频率范围在85 GHz至120 GHz之间的外差信号。通过将集成激光器光注入锁定到外部光学频率梳源,已产生了频率大于100 GHz的高光谱纯度信号,在相对于载波偏移大于10 kHz时实现了低于-90 dBc/Hz的相位噪声谱密度。

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