Pezeril Thomas, Klieber Christoph, Shalagatskyi Viktor, Vaudel Gwenaelle, Temnov Vasily, Schmidt Oliver G, Makarov Denys
Opt Express. 2014 Feb 24;22(4):4590-8. doi: 10.1364/OE.22.004590.
We have developed a high-sensitivity, low-noise femtosecond imaging technique based on pump-probe time-resolved measurements with a standard CCD camera. The approach used in the experiment is based on lock-in acquisitions of images generated by a femtosecond laser probe synchronized to modulation of a femtosecond laser pump at the same rate. This technique allows time-resolved imaging of laser-excited phenomena with femtosecond time resolution. We illustrate the technique by time-resolved imaging of the nonlinear reshaping of a laser-excited picosecond acoustic pulse after propagation through a thin gold layer. Image analysis reveals the direct 2D visualization of the nonlinear acoustic propagation of the picosecond acoustic pulse. Many ultrafast pump-probe investigations can profit from this technique because of the wealth of information it provides over a typical single diode and lock-in amplifier setup, for example it can be used to image ultrasonic echoes in biological samples.
我们基于使用标准电荷耦合器件(CCD)相机进行泵浦 - 探测时间分辨测量,开发了一种高灵敏度、低噪声的飞秒成像技术。实验中所采用的方法基于对由飞秒激光探针生成的图像进行锁相采集,该飞秒激光探针与飞秒激光泵浦以相同速率调制同步。这种技术能够以飞秒时间分辨率对激光激发现象进行时间分辨成像。我们通过对激光激发的皮秒声脉冲在穿过薄金层后的非线性重塑进行时间分辨成像来说明该技术。图像分析揭示了皮秒声脉冲非线性声传播的直接二维可视化。许多超快泵浦 - 探测研究都能从这项技术中受益,因为它相较于典型的单二极管和锁相放大器设置能提供丰富的信息,例如它可用于对生物样本中的超声回波进行成像。