THz emission from multiple ionized plasma

Fuente: arXiv
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Main Authors: Jurkovičová, Lucie, Štok, David, Juliano, Caroline, Staněk, Matyáš, Nejdl, Jaroslav, Hort, Ondřej
Format: Preprint
Published: 2025
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_version_ 1866912546754134016
author Jurkovičová, Lucie
Štok, David
Juliano, Caroline
Staněk, Matyáš
Nejdl, Jaroslav
Hort, Ondřej
author_facet Jurkovičová, Lucie
Štok, David
Juliano, Caroline
Staněk, Matyáš
Nejdl, Jaroslav
Hort, Ondřej
contents Studies employing nonlinear interactions of THz pulses are nowadays a promising scientific research field. To capture these phenomena, THz pulses with energy ranging from hundreds of \muJ to the mJ level are necessary. However, techniques that provide pulses with such energy levels are still not widely established. Upscaling methods of laser-solid interaction is limited by the damage threshold of materials, while the mechanism of THz generation from high intensity laser-gas interactions is not fully understood yet. Here, we establish the photocurrent model of laser-driven plasma THz generation in the high-intensity regime by accounting for high-ionization states of the target gas. Our model shows excellent agreement with experimental observations, provides a clear explanation of phenomena in both spectral and temporal domains, and explains the high conversion efficiency from laser to THz. In the experiments, we achieved a generation of 0.2 mJ THz pulses, driven by a Ti:sapphire laser with a conversion efficiency exceeding 1 %.
format Preprint
id arxiv_https___arxiv_org_abs_2508_15462
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle THz emission from multiple ionized plasma
Jurkovičová, Lucie
Štok, David
Juliano, Caroline
Staněk, Matyáš
Nejdl, Jaroslav
Hort, Ondřej
Plasma Physics
Studies employing nonlinear interactions of THz pulses are nowadays a promising scientific research field. To capture these phenomena, THz pulses with energy ranging from hundreds of \muJ to the mJ level are necessary. However, techniques that provide pulses with such energy levels are still not widely established. Upscaling methods of laser-solid interaction is limited by the damage threshold of materials, while the mechanism of THz generation from high intensity laser-gas interactions is not fully understood yet. Here, we establish the photocurrent model of laser-driven plasma THz generation in the high-intensity regime by accounting for high-ionization states of the target gas. Our model shows excellent agreement with experimental observations, provides a clear explanation of phenomena in both spectral and temporal domains, and explains the high conversion efficiency from laser to THz. In the experiments, we achieved a generation of 0.2 mJ THz pulses, driven by a Ti:sapphire laser with a conversion efficiency exceeding 1 %.
title THz emission from multiple ionized plasma
topic Plasma Physics
url https://arxiv.org/abs/2508.15462