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利用级联四波混频实现基于相位调制连续波激光器的光频梳的带宽扩展和光谱平坦度增强。

Bandwidth scaling and spectral flatness enhancement of optical frequency combs from phase-modulated continuous-wave lasers using cascaded four-wave mixing.

机构信息

Electrical and Computer Engineering, Purdue University, West Lafayette, Indiana 47907, USA.

出版信息

Opt Lett. 2012 Aug 1;37(15):3066-8. doi: 10.1364/OL.37.003066.

Abstract

We introduce a new cascaded four-wave mixing technique that scales up the bandwidth of frequency combs generated by phase modulation of a continuous-wave (CW) laser while simultaneously enhancing the spectral flatness. As a result, we demonstrate a 10 GHz frequency comb with over 100 lines in a 10 dB bandwidth in which a record 75 lines are within a flatness of 1 dB. The cascaded four-wave mixing process increases the bandwidth of the initial comb generated by the modulation of a CW laser by a factor of five. The broadband comb has approximately quadratic spectral phase, which is compensated upon propagation in single-mode fiber, resulting in a 10 GHz train of 940 fs pulses.

摘要

我们介绍了一种新的级联四波混频技术,该技术可扩展连续波 (CW) 激光相位调制产生的频梳的带宽,同时提高光谱平坦度。因此,我们展示了一种具有超过 100 个线的 10 GHz 频梳,在 10 dB 带宽内,有记录的 75 个线的平坦度为 1 dB。级联四波混频过程将 CW 激光调制产生的初始频梳的带宽增加了五倍。宽带梳状结构具有近似二次光谱相位,在单模光纤中传播时会得到补偿,从而产生 10 GHz 的 940 fs 脉冲序列。

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