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用于光学采样应用的基于单个自由运行偏振复用腔的飞秒双梳镱钙氟化物激光器。

Femtosecond dual-comb Yb:CaF laser from a single free-running polarization-multiplexed cavity for optical sampling applications.

作者信息

Willenberg Benjamin, Pupeikis Justinas, Krüger Léonard M, Koch Florian, Phillips Christopher R, Keller Ursula

出版信息

Opt Express. 2020 Sep 28;28(20):30275-30288. doi: 10.1364/OE.403072.

Abstract

Dual optical frequency combs are an appealing solution to many optical measurement techniques due to their high spectral and temporal resolution, high scanning speed, and lack of moving parts. However, industrial and field-deployable applications of such systems are limited due to a high-cost factor and intricacy in the experimental setups, which typically require a pair of locked femtosecond lasers. Here, we demonstrate a single oscillator which produces two mode-locked output beams with a stable repetition rate difference. We achieve this via inserting two 45°-cut birefringent crystals into the laser cavity, which introduces a repetition rate difference between the two polarization states of the cavity. To mode-lock both combs simultaneously, we use a semiconductor saturable absorber mirror (SESAM). We achieve two simultaneously operating combs at 1050 nm with 175-fs duration, 3.2-nJ pulses and an average power of 440 mW in each beam. The average repetition rate is 137 MHz, and we set the repetition rate difference to 1 kHz. This laser system, which is the first SESAM mode-locked femtosecond solid-state dual-comb source based on birefringent multiplexing, paves the way for portable and high-power femtosecond dual-combs with flexible repetition rate. To demonstrate the utility of the laser for applications, we perform asynchronous optical sampling (ASOPS) on semiconductor thin-film structures with the free-running laser system, revealing temporal dynamics from femtosecond to nanosecond time scales.

摘要

双光频梳由于其高光谱和时间分辨率、高扫描速度以及无运动部件等特点,是许多光学测量技术的理想解决方案。然而,由于成本高昂且实验装置复杂,这类系统在工业和现场可部署应用方面受到限制,因为其通常需要一对锁相飞秒激光器。在此,我们展示了一种单振荡器,它能产生具有稳定重复频率差的两个锁模输出光束。我们通过在激光腔内插入两块45°切割的双折射晶体来实现这一点,这会在腔的两个偏振态之间引入重复频率差。为了同时锁模这两个频率梳,我们使用了半导体可饱和吸收镜(SESAM)。我们实现了在1050 nm处两个同时工作的频率梳,脉宽为175 fs,脉冲能量为3.2 nJ,每束光的平均功率为440 mW。平均重复频率为137 MHz,我们将重复频率差设置为1 kHz。这个激光系统是首个基于双折射复用的SESAM锁模飞秒固态双频梳源,为具有灵活重复频率的便携式高功率飞秒双频梳铺平了道路。为了证明该激光器在应用中的实用性,我们使用自由运转的激光系统对半导体薄膜结构进行了异步光学采样(ASOPS)实验,揭示了从飞秒到纳秒时间尺度的时间动态。

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