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一种用于超快磁化动力学时间分辨测量的双色双梳系统,采用无触发异步光学采样。

A two-color dual-comb system for time-resolved measurements of ultrafast magnetization dynamics using triggerless asynchronous optical sampling.

作者信息

Nishikawa D, Maezawa K, Fujii S, Okano M, Watanabe S

机构信息

Depertment of Physics, Faculty of Science and Technology, Keio University, 3-14-1 Hiyoshi, Kohoku-ku, Yokohama, Kanagawa 223-8522, Japan.

National Defense Academy, 1-10-20 Hashirimizu, Yokosuka, Kanagawa 239-8686, Japan.

出版信息

Rev Sci Instrum. 2023 Jun 1;94(6). doi: 10.1063/5.0147899.

Abstract

We report on an Er-doped fiber (EDF)-laser-based dual-comb system that allows us to perform triggerless asynchronous optical sampling pump-probe measurements of ultrafast demagnetization and spin precession in magnetic materials. Because the oscillation frequencies of the two frequency-comb light sources are highly stabilized, the pulse-to-pulse timing jitter is sufficiently suppressed, and data accumulation without any trigger signals is possible. To effectively induce spin precession in ferromagnetic thin films, the spectral bandwidth of the output of one of the EDF frequency comb sources is broadened by a highly nonlinear fiber and then amplified at a wavelength of about 1030 nm by a Yb-doped fiber amplifier. The output of the other frequency comb source is converted to about 775 nm by second harmonic generation. We used this system to observe ultrafast demagnetization and spin precession dynamics on the picosecond and nanosecond time scales in a permalloy thin film. This time-domain spectroscopy system is promising for the rapid characterization of spin-wave generation and propagation dynamics in magnetic materials.

摘要

我们报道了一种基于掺铒光纤(EDF)激光器的双梳状系统,该系统使我们能够对磁性材料中的超快退磁和自旋进动进行无触发异步光学采样泵浦 - 探测测量。由于两个频率梳状光源的振荡频率高度稳定,脉冲间定时抖动得到充分抑制,无需任何触发信号即可进行数据积累。为了在铁磁薄膜中有效诱导自旋进动,其中一个EDF频率梳状源的输出光谱带宽通过高非线性光纤拓宽,然后由掺镱光纤放大器在约1030 nm波长处放大。另一个频率梳状源的输出通过二次谐波产生转换为约775 nm。我们使用该系统在坡莫合金薄膜中观察了皮秒和纳秒时间尺度上的超快退磁和自旋进动动力学。这种时域光谱系统有望用于快速表征磁性材料中自旋波的产生和传播动力学。

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