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具有千兆赫兹重复频率的超快镱钇铝石榴石激光振荡器。

Ultrafast Yb:YAG laser oscillator with gigahertz repetition rate.

作者信息

Seidel Moritz, Pilat Jérémie, Lang Lukas, Phillips Christopher R, Keller Ursula

出版信息

Opt Express. 2023 Oct 9;31(21):34313-34324. doi: 10.1364/OE.503697.

Abstract

We present a SESAM modelocked Yb:YAG solid-state laser providing low-noise narrowband pulses with a pulse duration of 606 fs at a 1.09-GHz repetition rate, delivering up to 2.5 W of average output power. This laser provides access to a new parameter space that could previously not be reached by solid-state lasers and, to the best of our knowledge, is the first modelocked solid-state Yb:YAG laser in the gigahertz regime. This is achieved by introducing a single additional intracavity element, specifically a nonlinear birefringent YVO crystal, for soliton formation, polarization selection, and cavity intensity clamping. The isotropic pump absorption in Yb:YAG allows for stable and low-noise operation with multimode fiber pumping. This laser is ideally suited as a seed source for many commercial high-power Yb-doped amplification systems operating at a center wavelength around 1.03 µm. The laser exhibits a high power per comb line of 5.0 mW which also makes it interesting for applications in frequency comb spectroscopy, especially if it is used to pump an optical parametric oscillator. We measure a relative intensity noise (RIN) of 0.03%, integrated from 1 Hz to 10 MHz. Furthermore, we show that the laser timing jitter for noise frequencies >2 kHz is fully explained by a power-dependent shift in the center wavelength of 0.38 nm/W due to the quasi-three-level laser gain material. The narrow gain bandwidth of Yb:YAG reduces this contribution to noise in comparison to other SESAM modelocked Yb-doped lasers.

摘要

我们展示了一种SESAM锁模Yb:YAG固态激光器,它能提供低噪声窄带脉冲,脉冲持续时间为606飞秒,重复频率为1.09 GHz,平均输出功率高达2.5 W。该激光器提供了进入一个新参数空间的途径,这是以前固态激光器无法达到的,据我们所知,它是千兆赫兹频段的第一台锁模固态Yb:YAG激光器。这是通过引入一个额外的腔内元件,具体来说是一个非线性双折射YVO晶体来实现的,用于孤子形成、偏振选择和腔强度钳制。Yb:YAG中的各向同性泵浦吸收允许通过多模光纤泵浦实现稳定且低噪声的运行。该激光器非常适合作为许多工作在中心波长约1.03 µm的商用高功率掺镱放大系统的种子源。该激光器每梳状线具有5.0 mW的高功率,这也使其在频率梳光谱应用中很有吸引力,特别是当它用于泵浦光学参量振荡器时。我们测量了从1 Hz到10 MHz积分的相对强度噪声(RIN)为0.03%。此外,我们表明,由于准三能级激光增益材料,对于噪声频率>2 kHz,激光定时抖动完全由中心波长每瓦0.38 nm的功率依赖性偏移来解释。与其他SESAM锁模掺镱激光器相比,Yb:YAG较窄的增益带宽降低了这种对噪声的贡献。

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