Hakobyan Sargis, Wittwer Valentin J, Brochard Pierre, Gürel Kutan, Schilt Stéphane, Mayer Aline S, Keller Ursula, Südmeyer Thomas
Opt Express. 2017 Aug 21;25(17):20437-20453. doi: 10.1364/OE.25.020437.
We demonstrate the first self-referenced full stabilization of a diode-pumped solid-state laser (DPSSL) frequency comb with a GHz repetition rate. The Yb:CALGO DPSSL delivers an average output power of up to 2.1 W with a typical pulse duration of 96 fs and a center wavelength of 1055 nm. A carrier-envelope offset (CEO) beat with a signal-to-noise ratio of 40 dB (in 10-kHz resolution bandwidth) is detected after supercontinuum generation and f-to-2f interferometry directly from the output of the oscillator, without any external amplification or pulse compression. The repetition rate is stabilized to a reference synthesizer with a residual integrated timing jitter of 249 fs [10 Hz - 1 MHz] and a relative frequency stability of 10/s. The CEO frequency is phase-locked to an external reference via pump current feedback using home-built modulation electronics. It achieves a loop bandwidth of ~150 kHz, which results in a tight CEO lock with a residual integrated phase noise of 680 mrad [1 Hz - 1 MHz]. We present a detailed characterization of the GHz frequency comb that combines a noise analysis of the repetition rate f, of the CEO frequency f, and of an optical comb line at 1030 nm obtained from a virtual beat with a narrow-linewidth laser at 1557 nm using a transfer oscillator. An optical comb linewidth of about 800 kHz is assessed at 1-s observation time, for which the dominant noise sources of f and f are identified.
我们展示了首次对具有吉赫兹重复频率的二极管泵浦固态激光器(DPSSL)频率梳进行自参考完全稳定化。掺镱钙铝镓石榴石(Yb:CALGO)DPSSL的平均输出功率高达2.1 W,典型脉冲持续时间为96 fs,中心波长为1055 nm。在直接从振荡器输出进行超连续谱产生和f - 2f干涉测量后,检测到载波包络偏移(CEO)拍频信号,其信噪比为40 dB(在10 kHz分辨率带宽下),无需任何外部放大或脉冲压缩。重复频率被稳定到一个参考合成器,残余积分定时抖动为249 fs [10 Hz - 1 MHz],相对频率稳定性为10⁻⁹。CEO频率通过使用自制调制电子设备的泵浦电流反馈被锁相到外部参考。它实现了约150 kHz的环路带宽,这导致了紧密的CEO锁定,残余积分相位噪声为680 mrad [1 Hz - 1 MHz]。我们对吉赫兹频率梳进行了详细表征,该表征结合了对重复频率f、CEO频率f₀以及通过使用转移振荡器与1557 nm窄线宽激光器进行虚拟拍频得到的1030 nm光学梳齿线的噪声分析。在1秒观测时间内评估得到光学梳齿线宽约为800 kHz,并确定了f和f₀的主要噪声源。