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Kvantovaya Elektronika, 2018, Volume 48, Number 8, Pages 749–754 (Mi qe16868)  

This article is cited in 5 scientific papers (total in 5 papers)

Interaction of laser radiation with matter. Laser plasma

Accounting for the instrument function of crystal spectrometers operating in many reflection orders in the diagnostics of laser plasma from its continuum spectrum

M. A. Alkhimovaab, I. Yu. Skobelevab, A. Ya. Faenovac, D. A. Arichab, T. A. Pikuzad, S. A. Pikuzab*

a Joint Institute for High Temperatures, Russian Academy of Sciences, Moscow
b National Engineering Physics Institute "MEPhI", Moscow
c Open and Transdisciplinary Research Initiative, Osaka University, Japan
d Graduated School of Engineering, Osaka University, Japan

Abstract: By the example of an X-ray spectrometer with a spherically bent mica crystal we consider the diagnostic errors entailed when the observed bremsstrahlung spectrum is attributed to a single spectrum of reflection. As an illustration we choose the X-ray emission spectrum of the plasma produced at the surface of a steel foil by femtosecond laser pulses of relativistic intensity. It is shown that obtaining adequate results in the case of a high-temperature plasma calls for the consistent inclusion of all orders of reflection or diffraction with a dispersing device.

Keywords: high-temperature plasma, X-ray spectroscopic diagnostics, crystal spectrometer, instrumental function.

Funding Agency Grant Number
Russian Science Foundation 17-72-20272

* Author to whom correspondence should be addressed

Full text: PDF file (1683 kB)
References: PDF file   HTML file

English version:
Quantum Electronics, 2018, 48:8, 749–754

Bibliographic databases:

Received: 12.03.2018
Revised: 20.04.2018

Citation: M. A. Alkhimova, I. Yu. Skobelev, A. Ya. Faenov, D. A. Arich, T. A. Pikuz, S. A. Pikuz, “Accounting for the instrument function of crystal spectrometers operating in many reflection orders in the diagnostics of laser plasma from its continuum spectrum”, Kvantovaya Elektronika, 48:8 (2018), 749–754 [Quantum Electron., 48:8 (2018), 749–754]

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  • http://mi.mathnet.ru/eng/qe/v48/i8/p749

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    Citing articles on Google Scholar: Russian citations, English citations
    Related articles on Google Scholar: Russian articles, English articles

    This publication is cited in the following articles:
    1. M. Salvadori, P. L. Andreoli, S. Bollanti, F. Bombarda, M. Cipriani, F. Consoli, G. Cristofari, R. De Angelis, G. Di Giorgio, F. Flora, D. Giulietti, L. Mezi, M. Migliorati, M. A. Alkhimova, S. Pikuz, T. Pikuz, R. Kodama, J. Instrum., 14 (2019), C03007  crossref  isi  scopus
    2. A. S. Martynenko, S. A. Pikuz, I. Yu. Skobelev, S. N. Ryazantsev, C. Baird, N. Booth, L. Doehl, P. Durey, A. Ya. Faenov, D. Farley, R. Kodama, K. Lancaster, P. McKenna, C. D. Murphy, C. Spindloe, T. A. Pikuz, N. Woolsey, Phys. Rev. E, 101:4 (2020), 043208  crossref  isi  scopus
    3. M. A. Alkhimova, S. N. Ryazantsev, I. Yu. Skobelev, M. D. Mishchenko, A. S. Boldarev, F. Jie, L. Xin, L.-M. Chen, S. A. Pikuz, Tech. Phys. Lett., 46:3 (2020), 275–278  crossref  isi  scopus
    4. Ryazantsev S.N., Skobelev I.Yu., Filippov E.D., Martynenko A.S., Mishchenko M.D., Krus M., Renner O., Pikuz S.A., Matter Radiat. Extrem., 6:1 (2021), 014402  crossref  isi
    5. Martynenko A.S., Pikuz S.A., Skobelev I.Yu., Ryazantsev S.N., Baird C.D., Booth N., Dohl L.N.K., Durey P., Faenov A.Ya., Farley D., Kodama R., Lancaster K., McKenna P., Murphy C.D., Spindloe C., Pikuz T.A., Woolsey N., Matter Radiat. Extrem., 6:1 (2021), 014405  crossref  isi
  • Квантовая электроника Quantum Electronics
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