English

Phase-Insensitive Scattering of Terahertz Radiation

Optics 2017-01-30 v2

Abstract

The nonlinear interaction between Near-Infrared (NIR) and Terahertz pulses is principally investigated as a means for the detection of radiation in the hardly accessible THz spectral region. Most studies have targeted second-order nonlinear processes, given their higher efficiencies, and only a limited number have addressed third-order nonlinear interactions, mainly investigating four-wave mixing in air for broadband THz detection. We have studied the nonlinear interaction between THz and NIR pulses in solid-state media (specifically diamond), and we show how the former can be frequency-shifted up to UV frequencies by the scattering from the nonlinear polarisation induced by the latter. Such UV emission differs from the well-known electric-field-induced second harmonic (EFISH) one, as it is generated via a phase-insensitive scattering, rather than a sum- or difference-frequency four-wave-mixing process.

Keywords

Cite

@article{arxiv.1403.6026,
  title  = {Phase-Insensitive Scattering of Terahertz Radiation},
  author = {M. Petev and N. Westerberg and E. Rubino and D. Moss and A. Couairon and F. Légaré and R. Morandotti and D. Faccio and M. Clerici},
  journal= {arXiv preprint arXiv:1403.6026},
  year   = {2017}
}