Polarization state control for high peak power applications

Fuente: arXiv
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Autori principali: Starodubtseva, E. M., Tsymbalov, I. N., Gorlova, D. A., Ivanov, K. A., Savel'ev, A. B.
Natura: Preprint
Pubblicazione: 2024
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author Starodubtseva, E. M.
Tsymbalov, I. N.
Gorlova, D. A.
Ivanov, K. A.
Savel'ev, A. B.
author_facet Starodubtseva, E. M.
Tsymbalov, I. N.
Gorlova, D. A.
Ivanov, K. A.
Savel'ev, A. B.
contents Numerous applications in the extreme field science are possible with circularly polarized high peak power ultrashort pulses. Commonly used quarter wave plates are not applicable here, while multi-mirror schemes are very complicated. We showed that the simple PET film $\approx$20 $μ$m thick can be used to control the polarization state of the high peak power beam and achieve ellipticity of $\approx$0.8 with negligible nonlinear phase distortion. The film can withstand $10^3$ shots at intensity of $I = 3 \cdot 10^{12}$ W/cm$^2$ without visible damage. Thus, for a PW laser system and beam diameter of 20 cm the PET film can be used for quite a long time. We proved this experimentally using 1 TW femtosecond Ti:Sa laser measuring the angular distribution of the second harmonic from the plasma channel created in an undercritical gas plume.
format Preprint
id arxiv_https___arxiv_org_abs_2407_20113
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Polarization state control for high peak power applications
Starodubtseva, E. M.
Tsymbalov, I. N.
Gorlova, D. A.
Ivanov, K. A.
Savel'ev, A. B.
Plasma Physics
Optics
Numerous applications in the extreme field science are possible with circularly polarized high peak power ultrashort pulses. Commonly used quarter wave plates are not applicable here, while multi-mirror schemes are very complicated. We showed that the simple PET film $\approx$20 $μ$m thick can be used to control the polarization state of the high peak power beam and achieve ellipticity of $\approx$0.8 with negligible nonlinear phase distortion. The film can withstand $10^3$ shots at intensity of $I = 3 \cdot 10^{12}$ W/cm$^2$ without visible damage. Thus, for a PW laser system and beam diameter of 20 cm the PET film can be used for quite a long time. We proved this experimentally using 1 TW femtosecond Ti:Sa laser measuring the angular distribution of the second harmonic from the plasma channel created in an undercritical gas plume.
title Polarization state control for high peak power applications
topic Plasma Physics
Optics
url https://arxiv.org/abs/2407.20113