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利用半导体可饱和吸收镜的光光调制实现吉赫兹重复频率飞秒激光的载波包络偏移稳定

Carrier-envelope offset stabilization of a GHz repetition rate femtosecond laser using opto-optical modulation of a SESAM.

作者信息

Hakobyan Sargis, Wittwer Valentin J, Gürel Kutan, Mayer Aline S, Schilt Stéphane, Südmeyer Thomas

出版信息

Opt Lett. 2017 Nov 15;42(22):4651-4654. doi: 10.1364/OL.42.004651.

DOI:10.1364/OL.42.004651
PMID:29140334
Abstract

We demonstrate, to the best of our knowledge, the first carrier-envelope offset (CEO) frequency stabilization of a GHz femtosecond laser based on opto-optical modulation (OOM) of a semiconductor saturable absorber mirror (SESAM). The 1.05-GHz laser is based on a Yb:CALGO gain crystal and emits sub-100-fs pulses with 2.1-W average power at a center wavelength of 1055 nm. The SESAM plays two key roles: it starts and stabilizes the mode-locking operation and is simultaneously used as an actuator to control the CEO frequency. This second functionality is implemented by pumping the SESAM with a continuous-wave 980-nm laser diode in order to slightly modify its nonlinear reflectivity. We use the standard f-to-2f method for detection of the CEO frequency, which is stabilized by applying a feedback signal to the current of the SESAM pump diode. We compare the SESAM-OOM stabilization with the traditional method of gain modulation via control of the pump power of the Yb:CALGO gain crystal. While the bandwidth for gain modulation is intrinsically limited to ∼250  kHz by the laser cavity dynamics, we show that the OOM provides a feedback bandwidth above 500 kHz. Hence, we were able to obtain a residual integrated phase noise of 430 mrad for the stabilized CEO beat, which represents an improvement of more than 30% compared to gain modulation stabilization.

摘要

据我们所知,我们首次展示了基于半导体可饱和吸收镜(SESAM)的光光调制(OOM)实现的千兆赫飞秒激光载波包络偏移(CEO)频率稳定。该1.05千兆赫激光基于镱钙铝石榴石(Yb:CALGO)增益晶体,在中心波长1055纳米处发射平均功率为2.1瓦、脉宽小于100飞秒的脉冲。SESAM起到两个关键作用:它启动并稳定锁模操作,同时用作控制CEO频率的执行器。通过用连续波980纳米激光二极管泵浦SESAM来稍微改变其非线性反射率,从而实现第二个功能。我们使用标准的f - 2f方法检测CEO频率,通过向SESAM泵浦二极管的电流施加反馈信号来实现频率稳定。我们将SESAM - OOM稳定方法与通过控制Yb:CALGO增益晶体泵浦功率进行增益调制的传统方法进行了比较。虽然激光腔动力学本质上限制了增益调制带宽至约250千赫,但我们表明OOM提供了高于500千赫的反馈带宽。因此,对于稳定的CEO拍频,我们能够获得430毫弧度的残余积分相位噪声,与增益调制稳定相比,这代表了超过30%的改善。

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Carrier-envelope offset stabilization of a GHz repetition rate femtosecond laser using opto-optical modulation of a SESAM.利用半导体可饱和吸收镜的光光调制实现吉赫兹重复频率飞秒激光的载波包络偏移稳定
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