4.4 Article

Free-beam soliton self-compression in air

期刊

JOURNAL OF OPTICS
卷 20, 期 2, 页码 -

出版社

IOP PUBLISHING LTD
DOI: 10.1088/2040-8986/aa9bcc

关键词

laser filaments; ultrafast nonlinear optics; mid-infrared

类别

资金

  1. Russian Foundation for Basic Research [16-02-00843, 15-02-08792, 16-32-60164, 16-29-11789, 17-02-01131, 17-52-53092]
  2. Welch Foundation [A-1801]
  3. Russian Science Foundation [17-12-01533]
  4. Austrian Science Fund (FWF) [P 27577, F-4903-N23]
  5. ONR [00014-16-1-2578]
  6. Government of Russian Federation [14.Z50.31.0040]

向作者/读者索取更多资源

We identify a physical scenario whereby soliton transients generated in freely propagating laser beams within the regions of anomalous dispersion in air can be compressed as a part of their free-beam spatiotemporal evolution to yield few-cycle mid-and long-wavelength-infrared field waveforms, whose peak power is substantially higher than the peak power of the input pulses. We show that this free-beam soliton self-compression scenario does not require ionization or laser-induced filamentation, enabling high-throughput self-compression of mid-and long-wavelength-infrared laser pulses within a broad range of peak powers from tens of gigawatts up to the terawatt level. We also demonstrate that this method of pulse compression can be extended to long-range propagation, providing self-compression of high-peak-power laser pulses in atmospheric air within propagation ranges as long as hundreds of meters, suggesting new ways towards longer-range standoff detection and remote sensing.

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