Matter and Radiation at Extremes, Volume. 6, Issue 5, 054404(2021)

Scattering of ultrashort laser pulses on plasmons in a Maxwellian plasma

V. A. Astapenko1, F. B. Rosmej1,2,3,4, and E. S. Khramov1、a)
Author Affiliations
  • 1Moscow Institute of Physics and Technology (National Research University), Institutskii per. 9, 141701 Dolgoprudny, Russia
  • 2Sorbonne University, Faculty of Science and Engineering, UMR 7605, Case 128, 4 Place Jussieu, F-75252 Paris Cedex 05, France
  • 3LULI, Ecole Polytechnique, CEA, CNRS, Laboratoire pour l’Utilisation des Lasers Intenses, Physique Atomique dans les Plasmas Denses, F-91128 Palaiseau, France
  • 4National Research Nuclear University MEPhI (Moscow Engineering Physics Institute), Kashirskoe sh. 31, 115409 Moscow, Russia
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    References(45)

    [1] D. H.Froula, S. H.Glenzer, N. C. Luhmann, J.Sheffield. Plasma Scattering of Electromagnetic Radiation: Theory and Measurement Techniques(2011).

    [2] A.Akhiezer, I.Prokhoda, A.Sitenko. Scattering of electromagnetic waves in a plasma. Sov. Phys. JETP, 6, 576(1958).

    [3] E. E.Salpeter. Electron density fluctuations in a plasma. Phys. Rev., 120, 1528(1960).

    [5] D.Barron, J.Dougherty, D.Farley. A theory of incoherent scattering of radio waves by a plasma II. Scattering in a magnetic field. Proc. R. Soc. London, Ser. A, 263, 238-258(1961).

    [6] A.Akhiezer, I.Akhiezer, A.Sitenko. Contribution to the theory of plasma fluctuations. Sov. Phys. JETP, 14, 462-468(1962).

    [7] D. F.DuBois, V.Gilinsky. Incoherent scattering of radiation by plasmas. I. Quantum mechanical calculation of scattering cross sections. Phys. Rev., 133, A1308(1964).

    [8] D. F.Dubois, V.Gilinsky. Incoherent scattering of radiation by plasmas. II. Effect of Coulomb collisions on classical plasmas. Phys. Rev., 133, A1317(1964).

    [9] H.R?hr. A 90° laser scattering experiment for measuring temperature and density of ions and electrons in a cold dense theta pinch plasma. Z. Phys., 209, 295-310(1968).

    [10] T. P.Hughes. A new method for the determination of plasma electron temperature and density from Thomson scattering of an optical maser beam. Nature, 194, 268-269(1962).

    [11] G. L.Campbell, T. N.Carlstrom, J. C.DeBoo, R.Evanko, J.Evans, C. M.Greenfield, J.Haskovec, C. L.Hsieh, E.McKee, R. T.Snider et al. Design and operation of the multipulse Thomson scattering diagnostic on DIII‐D. Rev. Sci. Instrum., 63, 4901-4906(1992).

    [12] R.Behn, D.Dicken, B.Duval, J.Hackmann, B.Joye, I.Kjelberg, P. A.Krug, A.Pochelon, S. A.Salito, M. R.Siegrist. Ion temperature measurement of tokamak plasmas by collective Thomson scattering of D2O laser radiation. Phys. Rev. Lett., 62, 2833(1989).

    [13] S.G?tsch, H.Murmann, H.R?hr, H.Salzmann, K. H.Steuer. The Thomson scattering systems of the ASDEX upgrade tokamak. Rev. Sci. Instrum., 63, 4941-4943(1992).

    [14] A. L.McWhorter, A.Mooradian. Light scattering from plasmons and phonons in ga as. Light Scattering Spectra of Solids, 297-308(1969).

    [15] T.Bornath, S. H.Glenzer, G.Gregori, A.H?ll, O. L.Landen, R. W.Lee, P.Neumayer, S. W.Pollaine, R. J.Wallace, K.Widmann et al. Observations of plasmons in warm dense matter. Phys. Rev. Lett., 98, 065002(2007).

    [16] J. R.Lawrence, D.Waugh. Laser Surface Engineering: Processes and Applications(2014).

    [17] U.Keller. Recent developments in compact ultrafast lasers. Nature, 424, 831-838(2003).

    [18] A. H.Zewail. Femtochemistry: Atomic-scale dynamics of the chemical bond. J. Phys. Chem. A, 104, 5660-5694(2000).

    [19] J.Shah. Ultrafast Spectroscopy of Semiconductors and Semiconductor Nanostructures(2013).

    [20] M.Fushitani, A.Hishikawa. Single-order laser high harmonics in XUV for ultrafast photoelectron spectroscopy of molecular wavepacket dynamics. Struct. Dyn., 3, 062602(2016).

    [21] R.Al-Obaidi, M.Borgwardt, N.Engel, T.Kampen, S.M?hl, J.Metje, A.Moguilevski, A.Raheem, D.Tolksdorf, M.Wilke et al. Ultrafast photoelectron spectroscopy of solutions: Space-charge effect. New J. Phys., 17, 093016(2015).

    [22] C.Altucci, L.Brugnera, C.Froud, I.Procino, T.Siegel, E.Springate, R.Torres, I. C. E.Turcu, J. G.Underwood, R.Velotta et al. Extension of high harmonic spectroscopy in molecules by a 1300 nm laser field. Opt. Express, 18, 3174-3180(2010).

    [23] K.-L.Han, R.-F.Lu, P.-Y.Zhang. Attosecond-resolution quantum dynamics calculations for atoms and molecules in strong laser fields. Phys. Rev. E, 77, 066701(2008).

    [24] J.Gagnon, N.Karpowicz, F.Krausz, V. S.Yakovlev. Attosecond streaking enables the measurement of quantum phase. Phys. Rev. Lett., 105, 073001(2010).

    [25] N.Berrah, F.Calegari, N.Dudovich, M.Harmand, E.Lindroth, O.Smirnova, L.Young. Challenges and opportunities in attosecond and XFEL science. Nat. Rev. Phys., 1, 107-111(2019).

    [26] D.Ayuso, F.Calegari, M. C.Castrovilli, P.Decleva, J. B.Greenwood, F.Martín, M.Nisoli, A.Palacios, A.Trabattoni. Charge migration induced by attosecond pulses in bio-relevant molecules. J. Phys. B: At., Mol. Opt. Phys., 49, 142001(2016).

    [27] Y.Kida, R.Kinjo, T.Tanaka. Synthesizing high-order harmonics to generate a sub-cycle pulse in free-electron lasers. Appl. Phys. Lett., 109, 151107(2016).

    [28] T. D.Donnelly, R. W.Falcone, T. E.Glover, E. A.Lipman, A.Sullivan. Subpicosecond Thomson scattering measurements of optically ionized helium plasmas. Phys. Rev. Lett., 73, 78(1994).

    [29] S.Fritzler, D.Hulin, V.Malka, M.Pittman, A.Rousse, J. P.Rousseau, K.Ta Phuoc, D.Umstadter. X-ray radiation from nonlinear Thomson scattering of an intense femtosecond laser on relativistic electrons in a helium plasma. Phys. Rev. Lett., 91, 195001(2003).

    [30] P. M.Platzman, P. A.Wolff. Waves and Interactions in Solid State Plasmas(1973).

    [31] A.Sitenko. Electromagnetic Fluctuations in Plasma(2012).

    [32] B. S.Tanenbaum. Continuum theory of Thomson scattering. Phys. Rev., 171, 215(1968).

    [33] L.Divol, D. H.Froula, S. H.Glenzer, J. S.Ross. Thomson-scattering techniques to diagnose local electron and ion temperatures, density, and plasma wave amplitudes in laser produced plasmas. Rev. Sci. Instrum., 77, 10E522(2006).

    [34] A.Dinklage, T.Klinger, G.Marx, L.Schweikhard. Plasma Physics: Confinement, Transport and Collective Effects(2005).

    [35] A.Akhiezer, I. A.Akhiezer, R. V.Polovin, A. G.Sitenko, K. N.Stepanov. Plasma Electro-Dynamics(1975).

    [36] H.-J.Kunze. The Laser as a Tool for Plasma Diagnostics(1968).

    [37] V. A.Astapenko, V.Lisitsa, F. B.Rosmej. Plasma Atomic Physics(2020).

    [38] V. A.Astapenko, E. S.Khramov, V. S.Lisitsa, F. B.Rosmej. Thomson scattering in plasmas: Theory generalization for ultrashort laser pulse effects. Phys. Plasmas, 27, 083301(2020).

    [39] V. A.Astapenko. Scattering of an ultrashort electromagnetic radiation pulse by an atom in a broad spectral range. J. Exp. Theor. Phys., 112, 193-198(2011).

    [40] V. A.Astapenko. Scattering of an ultrashort electromagnetic pulse in a plasma. Plasma Phys. Rep., 37, 972-977(2011).

    [41] E.Fermi. Über die theorie des stosses zwischen atomen und elektrisch geladenen teilchen. Z. Phys., 29, 315(1924).

    [42] V. A.Astapenko, V. S.Lisitsa. On the theory of hydrogen atom ionization by ultra-short electromagnetic pulses. Contrib. Plasma Phys., 55, 522-528(2015).

    [43] I.Langmuir, L.Tonks. Note on ‘oscillations in ionized gases’. Phys. Rev., 33, 990(1929).

    [44] N.Maafa. Dispersion relation in a plasma with arbitrary degeneracy. Phys. Scr., 48, 351(1993).

    [45] L. M.Gorbunov, D. K.Salikhov. Scattering of nonmonochromatic radiation. Radiophys. Quantum Electron., 24, 759-763(1981).

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    V. A. Astapenko, F. B. Rosmej, E. S. Khramov. Scattering of ultrashort laser pulses on plasmons in a Maxwellian plasma[J]. Matter and Radiation at Extremes, 2021, 6(5): 054404

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    Paper Information

    Category: Fundamental Physics At Extreme Light

    Received: Aug. 5, 2021

    Accepted: Aug. 23, 2021

    Published Online: Oct. 19, 2021

    The Author Email: E. S. Khramov (Egor.Khramov@phystech.edu)

    DOI:10.1063/5.0065835

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