Time-dependent THz dielectric function of ZnTe under two-photon optical excitation at 800 nm wavelength

Fuente: arXiv
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Main Authors: Keiser, Farell, Zhang, Wentao, Johannesmann, Dominik, Beermann, Nicolas S., Meng, Yuhao, Hafez, Hassan A., Fabretti, Savio, Turchinovich, Dmitry
Format: Preprint
Published: 2026
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author Keiser, Farell
Zhang, Wentao
Johannesmann, Dominik
Beermann, Nicolas S.
Meng, Yuhao
Hafez, Hassan A.
Fabretti, Savio
Turchinovich, Dmitry
author_facet Keiser, Farell
Zhang, Wentao
Johannesmann, Dominik
Beermann, Nicolas S.
Meng, Yuhao
Hafez, Hassan A.
Fabretti, Savio
Turchinovich, Dmitry
contents ZnTe is arguably the most widely used nonlinear crystal for the generation and detection of THz radiation, used in conjunction with sub-bandgap optical excitation by femtosecond lasers operating near 800 nm. The THz dielectric function of ZnTe is the key parameter defining the efficiency and bandwidth of THz generation and detection. Here, we demonstrate that the THz dielectric function of ZnTe undergoes substantial transient modification at 800 nm sub-bandgap excitation under conditions typical for THz generation. These modifications arise from significant free-carrier generation via two-photon absorption of the 800 nm pump, accompanied by the pump-driven activation of the THz-active phonon modes. Using optical pump-THz probe spectroscopy, we characterized the THz dielectric function of ZnTe under 800 nm excitation as a function of pump fluence and pump-probe delay. Analysis of the experimental data within the Drude-Lorentz model provided the generated free carrier density and momentum scattering time, and oscillator strength of the pump activated THz phonon modes, revealing their transient evolution in dependence on the excitation conditions.
format Preprint
id arxiv_https___arxiv_org_abs_2604_08091
institution arXiv
publishDate 2026
record_format arxiv
spellingShingle Time-dependent THz dielectric function of ZnTe under two-photon optical excitation at 800 nm wavelength
Keiser, Farell
Zhang, Wentao
Johannesmann, Dominik
Beermann, Nicolas S.
Meng, Yuhao
Hafez, Hassan A.
Fabretti, Savio
Turchinovich, Dmitry
Other Condensed Matter
ZnTe is arguably the most widely used nonlinear crystal for the generation and detection of THz radiation, used in conjunction with sub-bandgap optical excitation by femtosecond lasers operating near 800 nm. The THz dielectric function of ZnTe is the key parameter defining the efficiency and bandwidth of THz generation and detection. Here, we demonstrate that the THz dielectric function of ZnTe undergoes substantial transient modification at 800 nm sub-bandgap excitation under conditions typical for THz generation. These modifications arise from significant free-carrier generation via two-photon absorption of the 800 nm pump, accompanied by the pump-driven activation of the THz-active phonon modes. Using optical pump-THz probe spectroscopy, we characterized the THz dielectric function of ZnTe under 800 nm excitation as a function of pump fluence and pump-probe delay. Analysis of the experimental data within the Drude-Lorentz model provided the generated free carrier density and momentum scattering time, and oscillator strength of the pump activated THz phonon modes, revealing their transient evolution in dependence on the excitation conditions.
title Time-dependent THz dielectric function of ZnTe under two-photon optical excitation at 800 nm wavelength
topic Other Condensed Matter
url https://arxiv.org/abs/2604.08091