| Literature DB >> 24663778 |
Thomas Pezeril, Christoph Klieber, Viktor Shalagatskyi, Gwenaelle Vaudel, Vasily Temnov, Oliver G Schmidt, Denys Makarov.
Abstract
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.Mesh:
Substances:
Year: 2014 PMID: 24663778 DOI: 10.1364/OE.22.004590
Source DB: PubMed Journal: Opt Express ISSN: 1094-4087 Impact factor: 3.894