We report on novel methods to generate ultra-short, coherent, X-rays using a laserplasma interaction. Nonlinear interaction of intense laser pulses with plasma creates stable, specific structures such as electron cusps. For example, wake waves excited in an underdense plasma by an intense, short-pulse laser become dense and propagate along with the laser pulse. This is called a relativistic flying mirror. The flying mirror can reflect a counter-propagating laser pulse and directly convert it into high-frequency radiation, with a frequency multiplication factor of ∼ 4γ2 and pulse shortening with the same factor. After the proof-of-principle experiments, we observed that the photon number generated in the flying mirror is close to the theoretical estimate. We present the details of the experiment in which a 9 TW laser pulse focused into a He gas jet generated the Flying Mirror, which partly reflected a 1 TW pulse, giving up to ∼ 1010 photons, 60 nJ ( photons/sr) in the XUV spectral region (12.8-22 nm).
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11 July 2012
LASER-DRIVEN RELATIVISTIC PLASMAS APPLIED TO SCIENCE, ENERGY, INDUSTRY, AND MEDICINE: The 3rd International Symposium
30 May–2 June 2011
Kyoto, Japan
Research Article|
July 11 2012
X-ray emission from relativistically moving electron density cusps
A. S. Pirozhkov;
A. S. Pirozhkov
Japan Atomic Energy Agency,
Japan
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T. Zh. Esirkepov;
T. Zh. Esirkepov
Japan Atomic Energy Agency,
Japan
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H. Kiriyama;
H. Kiriyama
Japan Atomic Energy Agency,
Japan
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T. Kameshima;
T. Kameshima
Japan Atomic Energy Agency,
Japan
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A. Ya. Faenov;
A. Ya. Faenov
Japan Atomic Energy Agency and Joint Institute for High Temperature of the Russian Academy of Science, Moscow,
Russia
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T. Pikuz;
T. Pikuz
Japan Atomic Energy Agency and Joint Institute for High Temperature of the Russian Academy of Science, Moscow,
Russia
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J. Ma;
J. Ma
Institute of Physics, Chinese Academy of Sciences, Beijing,
China
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L.-M. Chen;
L.-M. Chen
Institute of Physics, Chinese Academy of Sciences, Beijing,
China
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E. N. Ragozin;
E. N. Ragozin
P. N. Lebedev Physical Institute of the Russian Academy of Sciences, Leninsky prospekt 53, 119991 Moscow,
Russia
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Y. Kato;
Y. Kato
Japan Atomic Energy Agency and The Graduate School for the Creation of New Photonics Industries,
Japan
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T. Tajima;
T. Tajima
Japan Atomic Energy Agency and Ludwig-Maximilians-University,
Germany
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S. V. Bulanov
S. V. Bulanov
Japan Atomic Energy Agency altaddress,
Japan
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AIP Conf. Proc. 1465, 159–166 (2012)
Citation
M. Kando, A. S. Pirozhkov, T. Nakamura, Y. Hayashi, H. Kotaki, K. Kawase, T. Zh. Esirkepov, Y. Fukuda, H. Kiriyama, H. Okada, I. Daito, T. Kameshima, M. Mori, J. K. Koga, H. Daido, A. Ya. Faenov, T. Pikuz, J. Ma, L.-M. Chen, E. N. Ragozin, T. Kawachi, Y. Kato, T. Tajima, S. V. Bulanov; X-ray emission from relativistically moving electron density cusps. AIP Conf. Proc. 11 July 2012; 1465 (1): 159–166. https://doi.org/10.1063/1.4737556
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