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Multimillijoule coherent terahertz bursts from picosecond laser-irradiated metal foils

Ultrahigh-power terahertz (THz) radiation sources are essential for many applications, for example, THz-wave-based compact accelerators and THz control over matter. However, to date none of the THz sources reported, whether based upon large-scale accelerators or high-power lasers, have produced THz...

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Autores principales: Liao, Guoqian, Li, Yutong, Liu, Hao, Scott, Graeme G., Neely, David, Zhang, Yihang, Zhu, Baojun, Zhang, Zhe, Armstrong, Chris, Zemaityte, Egle, Bradford, Philip, Huggard, Peter G., Rusby, Dean R., McKenna, Paul, Brenner, Ceri M., Woolsey, Nigel C., Wang, Weimin, Sheng, Zhengming, Zhang, Jie
Formato: Online Artículo Texto
Lenguaje:English
Publicado: National Academy of Sciences 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6410825/
https://www.ncbi.nlm.nih.gov/pubmed/30760584
http://dx.doi.org/10.1073/pnas.1815256116
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author Liao, Guoqian
Li, Yutong
Liu, Hao
Scott, Graeme G.
Neely, David
Zhang, Yihang
Zhu, Baojun
Zhang, Zhe
Armstrong, Chris
Zemaityte, Egle
Bradford, Philip
Huggard, Peter G.
Rusby, Dean R.
McKenna, Paul
Brenner, Ceri M.
Woolsey, Nigel C.
Wang, Weimin
Sheng, Zhengming
Zhang, Jie
author_facet Liao, Guoqian
Li, Yutong
Liu, Hao
Scott, Graeme G.
Neely, David
Zhang, Yihang
Zhu, Baojun
Zhang, Zhe
Armstrong, Chris
Zemaityte, Egle
Bradford, Philip
Huggard, Peter G.
Rusby, Dean R.
McKenna, Paul
Brenner, Ceri M.
Woolsey, Nigel C.
Wang, Weimin
Sheng, Zhengming
Zhang, Jie
author_sort Liao, Guoqian
collection PubMed
description Ultrahigh-power terahertz (THz) radiation sources are essential for many applications, for example, THz-wave-based compact accelerators and THz control over matter. However, to date none of the THz sources reported, whether based upon large-scale accelerators or high-power lasers, have produced THz pulses with energies above the millijoule (mJ) level. Here, we report a substantial increase in THz pulse energy, as high as tens of mJ, generated by a high-intensity, picosecond laser pulse irradiating a metal foil. A further up-scaling of THz energy by a factor of ∼4 is observed when introducing preplasmas at the target-rear side. Experimental measurements and theoretical models identify the dominant THz generation mechanism to be coherent transition radiation, induced by the laser-accelerated energetic electron bunch escaping the target. Observation of THz-field-induced carrier multiplication in high-resistivity silicon is presented as a proof-of-concept application demonstration. Such an extremely high THz energy not only triggers various nonlinear dynamics in matter, but also opens up the research era of relativistic THz optics.
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spelling pubmed-64108252019-03-13 Multimillijoule coherent terahertz bursts from picosecond laser-irradiated metal foils Liao, Guoqian Li, Yutong Liu, Hao Scott, Graeme G. Neely, David Zhang, Yihang Zhu, Baojun Zhang, Zhe Armstrong, Chris Zemaityte, Egle Bradford, Philip Huggard, Peter G. Rusby, Dean R. McKenna, Paul Brenner, Ceri M. Woolsey, Nigel C. Wang, Weimin Sheng, Zhengming Zhang, Jie Proc Natl Acad Sci U S A Physical Sciences Ultrahigh-power terahertz (THz) radiation sources are essential for many applications, for example, THz-wave-based compact accelerators and THz control over matter. However, to date none of the THz sources reported, whether based upon large-scale accelerators or high-power lasers, have produced THz pulses with energies above the millijoule (mJ) level. Here, we report a substantial increase in THz pulse energy, as high as tens of mJ, generated by a high-intensity, picosecond laser pulse irradiating a metal foil. A further up-scaling of THz energy by a factor of ∼4 is observed when introducing preplasmas at the target-rear side. Experimental measurements and theoretical models identify the dominant THz generation mechanism to be coherent transition radiation, induced by the laser-accelerated energetic electron bunch escaping the target. Observation of THz-field-induced carrier multiplication in high-resistivity silicon is presented as a proof-of-concept application demonstration. Such an extremely high THz energy not only triggers various nonlinear dynamics in matter, but also opens up the research era of relativistic THz optics. National Academy of Sciences 2019-03-05 2019-02-13 /pmc/articles/PMC6410825/ /pubmed/30760584 http://dx.doi.org/10.1073/pnas.1815256116 Text en Copyright © 2019 the Author(s). Published by PNAS. http://creativecommons.org/licenses/by/4.0/ This open access article is distributed under Creative Commons Attribution License 4.0 (CC BY) (http://creativecommons.org/licenses/by/4.0/) .
spellingShingle Physical Sciences
Liao, Guoqian
Li, Yutong
Liu, Hao
Scott, Graeme G.
Neely, David
Zhang, Yihang
Zhu, Baojun
Zhang, Zhe
Armstrong, Chris
Zemaityte, Egle
Bradford, Philip
Huggard, Peter G.
Rusby, Dean R.
McKenna, Paul
Brenner, Ceri M.
Woolsey, Nigel C.
Wang, Weimin
Sheng, Zhengming
Zhang, Jie
Multimillijoule coherent terahertz bursts from picosecond laser-irradiated metal foils
title Multimillijoule coherent terahertz bursts from picosecond laser-irradiated metal foils
title_full Multimillijoule coherent terahertz bursts from picosecond laser-irradiated metal foils
title_fullStr Multimillijoule coherent terahertz bursts from picosecond laser-irradiated metal foils
title_full_unstemmed Multimillijoule coherent terahertz bursts from picosecond laser-irradiated metal foils
title_short Multimillijoule coherent terahertz bursts from picosecond laser-irradiated metal foils
title_sort multimillijoule coherent terahertz bursts from picosecond laser-irradiated metal foils
topic Physical Sciences
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6410825/
https://www.ncbi.nlm.nih.gov/pubmed/30760584
http://dx.doi.org/10.1073/pnas.1815256116
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