Das Subir, Liang Yi-Chih, Tanaka Shunji, Ozeki Yasuyuki, Kao Fu-Jen
Opt Express. 2019 Sep 16;27(19):27159-27167. doi: 10.1364/OE.27.027159.
In this work, we have demonstrated a stimulated emission (SE)-based pump-probe microscopy with subharmonic fast gate synchronization, which allows over an order of magnitude improvement in signal-to-noise ratio. Critically, the alternative way of modulation is implemented with the highest possible frequency that follows the lasers' repetition rate. Its working is based on a homemade frequency divider that divides the repetition frequency (76 MHz) of the Ti:sapphire (probe) laser to half of the repetition frequency, 38 MHz, which is used to synchronously drive the pump laser and to provide the reference signal for the ensuing lock-in detection. In this way, SE can be detected with sensitivity reaching the theoretical (shot noise) limits, with a much lower time constant (0.1 ms) for faster image acquisition.
在这项工作中,我们展示了一种基于受激辐射(SE)的泵浦 - 探测显微镜,其具有亚谐波快速门同步功能,可使信噪比提高一个数量级以上。关键在于,调制的替代方式是以跟随激光重复频率的尽可能高的频率来实现的。其工作基于一个自制的分频器,该分频器将钛宝石(探测)激光器的重复频率(76 MHz)分频为重复频率的一半,即38 MHz,用于同步驱动泵浦激光器,并为后续的锁相检测提供参考信号。通过这种方式,可以检测到灵敏度达到理论(散粒噪声)极限的SE,且具有低得多的时间常数(0.1 ms)以实现更快的图像采集。