任意延迟间隔下的快速扫描非线性时间分辨光谱学

T. Flory, V. Stummer, J. Pupeikis, B. Willenberg, A. Nussbaum-Lapping, F. V. Camargo, M. Barkauskas, C. Phillips, U. Keller, G. Cerullo, A. Pugžlys, A. Baltuska
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引用次数: 1

摘要

飞秒双梳激光器通过提供快速无运动,精确和准确的测量模式,在射频域中轻松注册梳子节拍音符,彻底改变了线性傅里叶域光谱。该技术的扩展已经应用于非线性时间分辨光谱学,其能量限制可以从以全振荡器重复率工作的源获得。本文提出了一种基于脉冲门控的飞秒频梳时间滤波技术。这为脉冲能量提供了所需的增强,并为设计用于泵浦探测技术的任意延迟波长可调脉冲对提供了灵活性。使用双通道毫焦耳放大器,我们演示了可编程生成极短,fs和极长(>ns)脉冲间延迟。可以在每个连续的放大器射击中直接实现预定的任意选择的脉冲间延迟,消除了通过光机械线或两个自由运行的振荡器的异步扫描来改变延迟设置所需的大量等待时间。通过测量chi^(2)互相关和chi^(3)多组分种群恢复动力学,我们证实了这种延迟生成方法的通能性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Rapid-scan nonlinear time-resolved spectroscopy over arbitrary delay intervals
Femtosecond dual-comb lasers have revolutionized linear Fourier-domain spectroscopy by offering a rapid motion-free, precise and accurate measurement mode with easy registration of the combs beat note in the RF domain. Extensions of this technique found already application for nonlinear time-resolved spectroscopy within the energy limit available from sources operating at the full oscillator repetition rate. Here, we present a technique based on time filtering of femtosecond frequency combs by pulse gating in a laser amplifier. This gives the required boost to the pulse energy and provides the flexibility to engineer pairs of arbitrarily delayed wavelength-tunable pulses for pump-probe techniques. Using a dual-channel millijoule amplifier, we demonstrate programmable generation of both extremely short, fs, and extremely long (>ns) interpulse delays. A predetermined arbitrarily chosen interpulse delay can be directly realized in each successive amplifier shot, eliminating the massive waiting time required to alter the delay setting by means of an optomechanical line or an asynchronous scan of two free-running oscillators. We confirm the versatility of this delay generation method by measuring chi^(2) cross-correlation and chi^(3) multicomponent population recovery kinetics.
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CiteScore
11.40
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