Self-referenced ultra-broadband transient terahertz spectroscopy using air-photonics

Terahertz (THz) air-photonics employs nonlinear interactions of ultrashort laser pulses in air to generate and detect THz pulses. As air is virtually non-dispersive, the optical-THz phase matching condition is automatically met, thus permitting the generation and detection of ultra-broadband THz pul...

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Veröffentlicht in:Optics express 2016-05, Vol.24 (9), p.10157-10171
Hauptverfasser: D'Angelo, F, Němec, H, Parekh, S H, Kužel, P, Bonn, M, Turchinovich, D
Format: Artikel
Sprache:eng
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Zusammenfassung:Terahertz (THz) air-photonics employs nonlinear interactions of ultrashort laser pulses in air to generate and detect THz pulses. As air is virtually non-dispersive, the optical-THz phase matching condition is automatically met, thus permitting the generation and detection of ultra-broadband THz pulses covering the entire THz spectral range without any gaps. Air-photonics naturally offers unique opportunities for ultra-broadband transient THz spectroscopy, yet many critical challenges inherent to this technique must first be resolved. Here, we present explicit guidelines for ultra-broadband transient THz spectroscopy with air-photonics, including a novel method for self-referenced signal acquisition minimizing the phase error, and the numerically-accurate approach to the transient reflectance data analysis.
ISSN:1094-4087
1094-4087
DOI:10.1364/OE.24.010157