4.3 Article

Modeling ultrafast shadowgraphy in laser-plasma interaction experiments

期刊

出版社

IOP PUBLISHING LTD
DOI: 10.1088/0741-3335/58/6/065004

关键词

laser wakefield acceleration; imaging; Fourier optics; femtosecond shadowgraphy

资金

  1. UK EPSRC [EP/G054950/1, EP/G056803/1, EP/G055165/1, EP/ M022463/1]
  2. DFG [TR18, KA 2869/2-1]
  3. BMBF [05K10SJ2, 03ZIK052]
  4. European Regional Development Fund (EFRE)
  5. LASERLAB-EUROPE (ECs Seventh Framework Programme) [284464]
  6. Engineering and Physical Sciences Research Council [EP/G056803/1, EP/G054940/1, EP/I014462/1, 1102540, EP/M022463/1] Funding Source: researchfish
  7. Science and Technology Facilities Council [ST/J002062/1, ST/P000835/1] Funding Source: researchfish
  8. EPSRC [EP/M022463/1, EP/G055165/1, EP/G056803/1, EP/I014462/1, EP/G054940/1] Funding Source: UKRI
  9. STFC [ST/P000835/1, ST/J002062/1] Funding Source: UKRI

向作者/读者索取更多资源

Ultrafast shadowgraphy is a new experimental technique that uses few-cycle laser pulses to image density gradients in a rapidly evolving plasma. It enables structures that move at speeds close to the speed of light, such as laser driven wakes, to be visualized. Here we study the process of shadowgraphic image formation during the propagation of a few cycle probe pulse transversely through a laser-driven wake using three-dimensional particle-in-cell simulations. In order to construct synthetic shadowgrams a near-field snapshot of the ultrashort probe pulse is analyzed by means of Fourier optics, taking into account the effect of a typical imaging setup. By comparing synthetic and experimental shadowgrams we show that the generation of synthetic data is crucial for the correct interpretation of experiments. Moreover, we study the dependence of synthetic shadowgrams on various parameters such as the imaging system aperture, the position of the object plane and the probe pulse delay, duration and wavelength. Finally, we show that time-dependent information from the interaction can be recovered from a single shot by using a broadband, chirped probe pulse and subsequent spectral filtering.

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