光参量放大器
光学
飞秒
超短脉冲
光放大器
材料科学
放大器
激光器
色散(光学)
光电子学
超快激光光谱学
物理
CMOS芯片
作者
William P. Carbery,Laurie A. Bizimana,Matthew S. Barclay,Nicholas D. Wright,Paul H. Davis,William B. Knowlton,Ryan D. Pensack,P. Arpin,Daniel B. Turner
摘要
A noncollinear optical parametric amplifier (NOPA) can produce few-cycle femtosecond laser pulses that are ideally suited for time-resolved optical spectroscopy measurements. However, the nonlinear-optical process giving rise to ultrabroadband pulses is susceptible to spatiotemporal dispersion problems. Here, we detail refinements, including chirped-pulse amplification (CPA) and pulse-front matching (PFM), that minimize spatiotemporal dispersion and thereby improve the properties of ultrabroadband pulses produced by a NOPA. The description includes a rationale behind the choices of optical and optomechanical components, as well as assessment protocols. We demonstrate these techniques using a 1 kHz, second-harmonic Ti:sapphire pump configuration, which produces ∼5-fs duration pulses that span from about 500 to 800 nm with a bandwidth of about 200 THz. To demonstrate the utility of the CPA-PFM-NOPA, we measure vibrational quantum beats in the transient-absorption spectrum of methylene blue, a dye molecule that serves as a reference standard.
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