Terahertz-slicing — an all-optical synchronization for 4th generation light sources

Author:

Chen M.ORCID,de Oliveira T. V. A. G.ORCID,Ilyakov I.,Nörenberg T.,Kuschewski F.,Deinert J.-C.ORCID,Awari N.,Ponomaryov A.,Kuntzsch M.,Kehr S. C.,Eng L. M.,Gensch M.ORCID,Kovalev S.ORCID

Abstract

A conceptually new approach to synchronizing accelerator-based light sources and external laser systems is presented. The concept is based on utilizing a sufficiently intense accelerator-based single-cycle terahertz pulse to slice a thereby intrinsically synchronized femtosecond-level part of a longer picosecond laser pulse in an electro-optic crystal. A precise synchronization of the order of 10 fs is demonstrated, allowing for real-time lock-in amplifier signal demodulation. We demonstrate successful operation of the concept with three benchmark experiments using a 4th generation accelerator-based terahertz light source, i.e. (i) far-field terahertz time-domain spectroscopy, (ii) terahertz high harmonic generation spectroscopy, and (iii) terahertz scattering-type scanning near-field optical microscopy.

Funder

Deutsche Forschungsgemeinschaft

Bundesministerium für Bildung und Forschung

Publisher

Optica Publishing Group

Subject

Atomic and Molecular Physics, and Optics

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