Nemoto Hirofumi, Suzuki Takakazu, Kannari Fumihiko
Opt Lett. 2020 Sep 15;45(18):5004-5007. doi: 10.1364/OL.398036.
To fully utilize the functions of a center-wavelength-sweeping pulse train generated by a free-space angular-chirp-enhanced delay optical layout for a probe laser pulse in sequentially timed all-optical mapping photography (STAMP), we introduced an integral field spectroscopy (IFS) method using a microlens array (MLA) to produce hyperspectral images, referring to the technique as lens array (LA)-STAMP. Compared with the previous STAMP utilizing spectral filtering where a bandpass filter generated hyperspectral images, LA-STAMP achieved much higher optical throughput. In a prototype setup, we used a 60×60 MLA and demonstrated single-shot burst imaging of a femtosecond laser-induced ablation process on a glass surface with 300 ps frame intervals in a 1.8 ns time window. Each frame image was constructed by assembling spectrally dispersed 36×36 monochromatic segments distributed by each lenslet on 5×5 pixels of a CCD camera. The spatial resolution was ∼4.4µ, which was determined by the MLA's pitch and the magnification of the microscope lens. We limited the number of frames to seven in this prototype setup, although it can be scaled to ∼24 with a spatial resolution of ∼1µ by designing IFS with a fine pitch MLA.
为了在顺序定时全光映射摄影(STAMP)中充分利用自由空间角啁啾增强延迟光学布局为探测激光脉冲生成的中心波长扫描脉冲序列的功能,我们引入了一种使用微透镜阵列(MLA)产生高光谱图像的积分场光谱(IFS)方法,并将该技术称为透镜阵列(LA)-STAMP。与之前利用光谱滤波(其中带通滤波器生成高光谱图像)的STAMP相比,LA-STAMP实现了更高的光通量。在一个原型装置中,我们使用了一个60×60的MLA,并在1.8 ns的时间窗口内以300 ps的帧间隔演示了玻璃表面飞秒激光诱导烧蚀过程的单次突发成像。每个帧图像是通过将由每个微透镜在电荷耦合器件(CCD)相机的5×5像素上分布的36×36个光谱分散的单色段组装而成。空间分辨率约为4.4µ,这是由MLA的间距和显微镜透镜的放大倍数决定的。在这个原型装置中,我们将帧数限制为七帧,不过通过使用具有精细间距MLA的IFS设计,它可以扩展到约24帧,空间分辨率约为1µ。