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Comparative Study of Single Crystal and Polymeric Pyroelectric Detectors in the 0.9–2.0 THz Range Using Monochromatic Laser Radiation of the NovoFEL

The development of efficient and reliable sensors operating at room temperature is essential to advance the application of terahertz (THz) science and technology. Pyroelectric THz detectors are among the best candidates, taking into account their variety, outstanding performance, ease of fabrication...

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Autores principales: Melnikov, Anatoly R., Kalneus, Evgeny V., Getmanov, Yaroslav V., Shevchenko, Darya A., Gerasimov, Vasily V., Anisimov, Oleg A., Fedin, Matvey V., Veber, Sergey L.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10610270/
https://www.ncbi.nlm.nih.gov/pubmed/37896368
http://dx.doi.org/10.3390/polym15204124
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author Melnikov, Anatoly R.
Kalneus, Evgeny V.
Getmanov, Yaroslav V.
Shevchenko, Darya A.
Gerasimov, Vasily V.
Anisimov, Oleg A.
Fedin, Matvey V.
Veber, Sergey L.
author_facet Melnikov, Anatoly R.
Kalneus, Evgeny V.
Getmanov, Yaroslav V.
Shevchenko, Darya A.
Gerasimov, Vasily V.
Anisimov, Oleg A.
Fedin, Matvey V.
Veber, Sergey L.
author_sort Melnikov, Anatoly R.
collection PubMed
description The development of efficient and reliable sensors operating at room temperature is essential to advance the application of terahertz (THz) science and technology. Pyroelectric THz detectors are among the best candidates, taking into account their variety, outstanding performance, ease of fabrication, and robustness. In this work, we compare the performance of six different detectors, based on either LaTiO(3) crystal or different polymeric films, using monochromatic radiation of the Novosibirsk Free Electron Laser facility (NovoFEL) in the frequency range of 0.9–2.0 THz. The main characteristics, including noise equivalent power and frequency response, were determined for all of them. Possible reasons for the differences in the obtained characteristics are discussed on the basis of the main physicochemical characteristics and optical properties of the sensitive area. At least three detectors showed sufficient sensitivity to monitor the shape and duration of the THz macropulses utilizing only a small fraction of the THz radiation from the primary beam. This capability is crucial for accurate characterization of THz radiation during the main experiment at various specialized endstations at synchrotrons and free electron lasers. As an example of such characterization, the typical stability of the average NovoFEL radiation power at the beamline of the electron paramagnetic resonance endstation was investigated.
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spelling pubmed-106102702023-10-28 Comparative Study of Single Crystal and Polymeric Pyroelectric Detectors in the 0.9–2.0 THz Range Using Monochromatic Laser Radiation of the NovoFEL Melnikov, Anatoly R. Kalneus, Evgeny V. Getmanov, Yaroslav V. Shevchenko, Darya A. Gerasimov, Vasily V. Anisimov, Oleg A. Fedin, Matvey V. Veber, Sergey L. Polymers (Basel) Article The development of efficient and reliable sensors operating at room temperature is essential to advance the application of terahertz (THz) science and technology. Pyroelectric THz detectors are among the best candidates, taking into account their variety, outstanding performance, ease of fabrication, and robustness. In this work, we compare the performance of six different detectors, based on either LaTiO(3) crystal or different polymeric films, using monochromatic radiation of the Novosibirsk Free Electron Laser facility (NovoFEL) in the frequency range of 0.9–2.0 THz. The main characteristics, including noise equivalent power and frequency response, were determined for all of them. Possible reasons for the differences in the obtained characteristics are discussed on the basis of the main physicochemical characteristics and optical properties of the sensitive area. At least three detectors showed sufficient sensitivity to monitor the shape and duration of the THz macropulses utilizing only a small fraction of the THz radiation from the primary beam. This capability is crucial for accurate characterization of THz radiation during the main experiment at various specialized endstations at synchrotrons and free electron lasers. As an example of such characterization, the typical stability of the average NovoFEL radiation power at the beamline of the electron paramagnetic resonance endstation was investigated. MDPI 2023-10-18 /pmc/articles/PMC10610270/ /pubmed/37896368 http://dx.doi.org/10.3390/polym15204124 Text en © 2023 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Melnikov, Anatoly R.
Kalneus, Evgeny V.
Getmanov, Yaroslav V.
Shevchenko, Darya A.
Gerasimov, Vasily V.
Anisimov, Oleg A.
Fedin, Matvey V.
Veber, Sergey L.
Comparative Study of Single Crystal and Polymeric Pyroelectric Detectors in the 0.9–2.0 THz Range Using Monochromatic Laser Radiation of the NovoFEL
title Comparative Study of Single Crystal and Polymeric Pyroelectric Detectors in the 0.9–2.0 THz Range Using Monochromatic Laser Radiation of the NovoFEL
title_full Comparative Study of Single Crystal and Polymeric Pyroelectric Detectors in the 0.9–2.0 THz Range Using Monochromatic Laser Radiation of the NovoFEL
title_fullStr Comparative Study of Single Crystal and Polymeric Pyroelectric Detectors in the 0.9–2.0 THz Range Using Monochromatic Laser Radiation of the NovoFEL
title_full_unstemmed Comparative Study of Single Crystal and Polymeric Pyroelectric Detectors in the 0.9–2.0 THz Range Using Monochromatic Laser Radiation of the NovoFEL
title_short Comparative Study of Single Crystal and Polymeric Pyroelectric Detectors in the 0.9–2.0 THz Range Using Monochromatic Laser Radiation of the NovoFEL
title_sort comparative study of single crystal and polymeric pyroelectric detectors in the 0.9–2.0 thz range using monochromatic laser radiation of the novofel
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10610270/
https://www.ncbi.nlm.nih.gov/pubmed/37896368
http://dx.doi.org/10.3390/polym15204124
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