Generation of 17–32 THz radiation from a CdSiP2 crystal

Author:

Carnio B. N.1,Zawilski K. T.2,Schunemann P. G.2ORCID,Moutanabbir O.3,Elezzabi A. Y.1

Affiliation:

1. University of Alberta

2. BAE Systems

3. École Polytechnique de Montréal

Abstract

A phase-resolved electric field pulse is produced through the second-order nonlinear process of intra-pulse difference frequency generation (DFG) in a (110) CdSiP2 chalcopyrite crystal. The generated electric field pulse exhibits a duration of several picoseconds and contains frequency components within the high-frequency terahertz regime of ∼17–32 THz. The intra-pulse DFG signal is shown to be influenced by single-phonon and two-phonon absorption, the nonlinear phase-matching criterion, and temporal spreading of the excitation electric field pulse. To date, this is the first investigation in which a CdSiP2 chalcopyrite crystal is used to produce radiation within the aforementioned spectral range.

Funder

Defence R&D Canada

Natural Sciences and Engineering Research Council of Canada

Publisher

Optica Publishing Group

Subject

Atomic and Molecular Physics, and Optics

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