论文标题

使用低重复速率激光器进行超快泵送的时间和频域中的噪声

Filtering Noise in Time and Frequency Domain for Ultrafast Pump-Probe Performed Using Low Repetition Rate Lasers

论文作者

Khatua, Durga Prasad, Gurung, Sabina, Singh, Asha, Khan, Salahuddin, Sharma, Tarun Kumar, Jayabalan, J.

论文摘要

光泵探针光谱是一种强大的工具,可以直接探测材料中的载体动力学,直至次秒分辨率。要执行此类测量,同时将泵诱导的样品诱导扰动尽可能小,必须具有具有高信号噪声比的检测方案。当将高重复率激光用作光脉冲源时,基于锁定率的锁定率检测相位敏感检测,实现这种高信号与噪声比非常容易。但是,当使用低重复率激光器进行测量时,这种基于放大的锁定方法无法正常工作。在本文中,提出并通过实验证明了敏感的检测方案,该方案结合了Boxcar的优势,该方案拒绝了时域和放大器锁定器中的噪声,该噪声通过低重复速率激光系统进行了频域中的信号,用于进行泵探针测量。提出了一种理论模型,以解释信号检测过程和一种减少探针脉冲中脉冲能量波动的脉冲波动的方法。通过在各种检测条件下执行泵探针测量值,出现了以低噪声获得瞬态吸收信号所需的最佳条件。报告的技术不仅限于泵探针测量,因此可以轻松修改以套件以低重复速率以其他敏感测量值。

Optical pump-probe spectroscopy is a powerful tool to directly probe the carrier dynamics in materials down to sub-femtosecond resolution. To perform such measurement, while keeping the pump induced perturbation to the sample as small as possible, it is essential to have a detection scheme with high signal to noise ratio. Achieving such high signal to noise ratio is easy with phase sensitive detection based on lock-in-amplifier when a high repetition rate laser is used as the optical pulse source. However such a lock-in-amplifier based method does not work well when a low repetition rate laser is used for the measurement. In this article, a sensitive detection scheme which combines the advantages of boxcar which rejects noise in time domain and lock-in-amplifier which isolates signal in frequency domain for performing pump-probe measurements using low-repetition rate laser system is proposed and experimentally demonstrated. A theoretical model to explain the process of signal detection and a method to reduce the pulse to pulse energy fluctuation in probe pulses is presented. By performing pump-probe measurements at various detection conditions the optimum condition required for obtaining transient absorption signal with low noise is presented. The reported technique is not limited to pump-probe measurements and can be easily modified to suite for other sensitive measurements at low-repetition rates.

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