Hakobyan Sargis, Wittwer Valentin J, Gürel Kutan, Mayer Aline S, Schilt Stéphane, Südmeyer Thomas
Opt Lett. 2017 Nov 15;42(22):4651-4654. doi: 10.1364/OL.42.004651.
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.
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。