Matter and Radiation at Extremes, Volume. 8, Issue 1, 014403(2023)

Overcritical electron acceleration and betatron radiation in the bubble-like structure formed by re-injected electrons in a tailored transverse plasma

Yuan Zhao1,2,3, Haiyang Lu1,2, Cangtao Zhou1,2,3, and Jungao Zhu1,2
Author Affiliations
  • 1Center for Advanced Material Diagnostic Technology and College of Engineering Physics, Shenzhen Technology University, Shenzhen 518118, People’s Republic of China
  • 2Shenzhen Key Laboratory of Ultraintense Laser and Advanced Material Technology, Shenzhen Technology University, Shenzhen 518118, People’s Republic of China
  • 3College of Optoelectronic Engineering, Shenzhen University, Shenzhen 518060, People’s Republic of China
  • show less
    References(40)

    [1] J. M.Dawson, T.Tajima. Laser electron accelerator. Phys. Rev. Lett., 43, 267(1979).

    [2] E.Esarey, W. P.Leemans, C. B.Schroeder. Physics of laser-driven plasma-based electron accelerators. Rev. Mod. Phys, 81, 1229(2009).

    [3] S. M.Hooker. Developments in laser-driven plasma accelerators. Nat. Photonics, 7, 775-782(2013).

    [4] C.Benedetti, J.?H.Bin, S.?S.Bulanov, J.Daniels, A. J.Gonsalves, K.Nakamura, C.Pieronek, T.?C.?H. deRaadt, S.Steinke, J. vanTilborg et al. Petawatt laser guiding and electron beam acceleration to 8 GeV in a laser-heated capillary discharge waveguide. Phys. Rev. Lett, 122, 084801(2019).

    [5] R. J.Clarke, A. E.Dangor, R. G.Evans, S.Fritzler, A.Gopal, C.Hernandez-Gomez, S. P. D.Mangles, Z.Najmudin, M.Tzoufras, B. R.Walton et al. Electron acceleration in cavitated channels formed by a petawatt laser in low-density plasma. Phys. Rev. Lett, 94, 245001(2005).

    [6] J.Meyer-ter-Vehn, A.Pukhov, Z.-M.Sheng. Particle acceleration in relativistic laser channels. Phys. Plasmas, 6, 2847-2854(1999).

    [7] C.Gahn, D.Habs, J.Meyer-ter-Vehn, G.Pretzler, A.Pukhov, P.Thirolf, G. D.Tsakiris, K. J.Witte. Multi-MeV electron beam generation by direct laser acceleration in high-density plasma channels. Phys. Rev. Lett., 83, 4772(1999).

    [8] L. B.Fu, X. T.He, B.Liu, J.Liu, H. Y.Wang, Y. J.Xu, X. Q.Yan. Generating overcritical dense relativistic electron beams via self-matching resonance acceleration. Phys. Rev. Lett., 110, 045002(2013).

    [9] F.Liu, A.Pukhov, Z.-M.Sheng, G.Shvets, Y.Tong-Pu. Bright betatronlike X rays from radiation pressure acceleration of a mass-limited foil target. Phys. Rev. Lett., 110, 045001(2013).

    [10] X. T.He, T. W.Huang, B.Qiao, S. C.Ruan, S. Z.Wu, H.Zhang, C. T.Zhou. Relativistic laser hosing instability suppression and electron acceleration in a preformed plasma channel. Phys. Rev. E, 95, 043207(2017).

    [11] E.Esarey, J.Krall, P.Sprangle, A.Ting. Enhanced acceleration in a self-modulated-laser wake-field accelerator. Phys. Rev. E, 48, 2157(1993).

    [12] E.Esarey, W. P.Leemans, C. B.Schroeder, B. A.Shadwick. Trapping, dark current, and wave breaking in nonlinear plasma waves. Phys. Plasmas, 13, 033103(2006).

    [13] C.Joshi, W.Lu, K. A.Marsh, S. F.Martins, W. B.Mori, A.Pak. Injection and trapping of tunnel-ionized electrons into laser-produced wakes. Phys. Rev. Lett., 104, 025003(2010).

    [14] M.Chen, Y.-Y.Ma, Z.-M.Sheng, J.Zhang. Electron injection and trapping in a laser wakefield by field ionization to high-charge states of gases. J. Appl. Phys., 99, 056109(2006).

    [15] C.Benedetti, C. G. R.Geddes, A. J.Gonsalves, C.Lin, K.Nakamura, D.Panasenko, C. B.Schroeder, S.Shiraishi, T.Sokollik, J.Van Tilborget?al.. Tunable laser plasma accelerator based on longitudinal density tailoring. Nat. Phys., 7, 862-866(2011).

    [16] E.Dodd, J. K.Kim, D.Umstadter. Laser injection of ultrashort electron pulses into wakefield plasma waves. Phys. Rev. Lett., 76, 2073(1996).

    [17] S. V.Bulanov, T. Z.Esirkepov, Y.Kato. Bow wave from ultraintense electromagnetic pulses in plasmas. Phys. Rev. Lett., 101, 265001(2008).

    [18] L.Ammoura, J.Faure, O.Lundh, V.Malka, C.Rechatin. Injection and acceleration of quasimonoenergetic relativistic electron beams using density gradients at the edges of a plasma channel. Phys. Plasmas, 17, 083107(2010).

    [19] C.Hojbota, K.Hong Pae, H. T.Kim, H. W.Lee, S. K.Lee, A.Lifschitz, V. B.Pathak, J. H.Shin, J. H.Sung, F.Syllaet?al.. Stable multi-GeV electron accelerator driven by waveform-controlled PW laser pulses. Sci. Rep., 7, 10203(2017).

    [20] M.Chen, S.Chen, C.Fruhling, G.Golovin, D.Haden, C.Liu, J.Luo, W.Yan, P.Zhang, B.Zhaoet?al.. Electron trapping from interactions between laser-driven relativistic plasma waves. Phys. Rev. Lett., 121, 104801(2018).

    [21] R.Fonseca, C.Joshi, W.Lu, W.Mori, L.Silva, F.Tsung, M.Tzoufras, J.Vieira. Generating multi-GeV electron bunches using single stage laser wakefield acceleration in a 3D nonlinear regime. Phys. Rev. Spec. Top.--Accel. Beams, 10, 061301(2007).

    [22] M.Galimberti, A.Giulietti, D.Giulietti, L. A.Gizzi, L.Labate, F.Pegoraro, P.Tomassini. Production of high-quality electron beams in numerical experiments of laser wakefield acceleration with longitudinal wave breaking. Phys. Rev. Spec. Top.--Accel. Beams, 6, 121301(2003).

    [23] A. V.Brantov, S. V.Bulanov, V. Y.Bychenkov, T. Z.Esirkepov, M.Kando, H.Kotaki. Controlled electron injection into the wake wave using plasma density inhomogeneity. Phys. Plasmas, 15, 073111(2008).

    [24] N.Hafz, J. U.Kim, H.Suk. Electron trapping and acceleration across a parabolic plasma density profile. Phys. Rev. E, 69, 026409(2004).

    [25] S.Bulanov, N.Naumova, F.Pegoraro, J.Sakai. Particle injection into the wave acceleration phase due to nonlinear wake wave breaking. Phys. Rev. E, 58, R5257(1998).

    [26] N.Barov, E.Esarey, J. B.Rosenzweig, H.Suk. Plasma electron trapping and acceleration in a plasma wake field using a density transition. Phys. Rev. Lett., 86, 1011(2001).

    [27] Y.Chen, K.Feng, L. T.Ke, R.Qi, Z. Y.Qin, W. T.Wang, Y.Wu, Y.Xu, C. H.Yu, Z. J.Zhanget?al.. Near-GeV electron beams at a few per-mille level from a laser wakefield accelerator via density-tailored plasma. Phys. Rev. Lett., 126, 214801(2021).

    [28] A.Buck, M.Geissler, M.Heigoldt, K.Khrennikov, F.Krausz, J. M.Mikhailova, K.Schmid, B.Shen, J.Wenz, J.Xuet?al.. Shock-front injector for high-quality laser-plasma acceleration. Phys. Rev. Lett., 110, 185006(2013).

    [29] F. Y.Li, Y.Liu, W.Lu, J.Meyer-ter-Vehn, W. B.Mori, Z. M.Sheng, J.Zhang. Dense attosecond electron sheets from laser wakefields using an up-ramp density transition. Phys. Rev. Lett., 110, 135002(2013).

    [30] I.Andriyash, Y.Azamoum, U.Chaulagain, J.Gautier, J.-P.Goddet, N.Jourdain, M.Kozlova, K.Oubrerie, A.Rousse, S.Sebban, S.Smartsev, K.Ta Phuoc, A.Tafzi, C.Thaury. Hard X rays from laser-wakefield accelerators in density tailored plasmas. Phys. Rev. X, 10, 011061(2020).

    [31] X.Davoine, J.Ferri. Enhancement of betatron x rays through asymmetric laser wakefield generated in transverse density gradients. Phys. Rev. Accel. Beams, 21, 091302(2018).

    [32] P.Gibbon. Short Pulse Laser Interactions with Matter: An Introduction(2005).

    [33] R. A.Fonseca, L. O.Silva, M.Vranic. Extremely intense laser-based electron acceleration in a plasma channel. Plasma Phys. Controlled Fusion, 60, 034002(2018).

    [34] A.Macchi. A Superintense Laser-Plasma Interaction Primer(2013).

    [35] P.Chen, F.Dollar, D.Farinella, G.Mourou, B.Shen, Y.Shin, P.Taborek, T.Tajima, J.Wheeler, X.Zhang. Particle-in-cell simulation of x-ray wakefield acceleration and betatron radiation in nanotubes. Phys. Rev. Accel. Beams, 19, 101004(2016).

    [36] T. R.Clark, H. M.Milchberg. Time and space-resolved density evolution of the plasma waveguide. Phys. Rev. Lett., 78, 2373-2376(1997).

    [37] T.Cai, J.Cao, T.Huang, K.Jiang, L.Ju, B.Qiao, S.Ruan, H.Zhang, C.Zhou. Manipulating the topological structure of ultrarelativistic electron beams using Laguerre–Gaussian laser pulse. New J. Phys., 20, 063004(2018).

    [38] C.-e.Chen, X.He, R.Hu, C.Lin, B.Liu, H.Lu, Z.Sheng, X.Yan, M.Zhou. Dense helical electron bunch generation in near-critical density plasmas with ultrarelativistic laser intensities. Sci. Rep., 5, 15499(2015).

    [39] A.Beck, S.Corde, R.Fitour, G.Lambert, E.Lefebvre, V.Malka, A.Rousse, K.Ta Phuoc. Femtosecond x rays from laser-plasma accelerators. Rev. Mod. Phys., 85, 1-48(2013).

    [40] C.Bellei, N.Bourgeois, A. E.Dangor, A.Gopal, R.Heathcote, S.Kneip, K.Krushelnick, A.Maksimchuk, S. P. D.Mangles, J. R.Marquès, W. B.Mori, S. R.Nagel, Z.Najmudin, P. M.Nilson, K. T.Phuoc, S.Reed, A.Rousse, F. S.Tsung, M.Tzoufras, L.Willingale. Observation of synchrotron radiation from electrons accelerated in a petawatt-laser-generated plasma cavity. Phys. Rev. Lett., 100, 105006(2008).

    Tools

    Get Citation

    Copy Citation Text

    Yuan Zhao, Haiyang Lu, Cangtao Zhou, Jungao Zhu. Overcritical electron acceleration and betatron radiation in the bubble-like structure formed by re-injected electrons in a tailored transverse plasma[J]. Matter and Radiation at Extremes, 2023, 8(1): 014403

    Download Citation

    EndNote(RIS)BibTexPlain Text
    Save article for my favorites
    Paper Information

    Category: Fundamental Physics At Extreme Light

    Received: Aug. 18, 2022

    Accepted: Nov. 15, 2022

    Published Online: Feb. 20, 2023

    The Author Email:

    DOI:10.1063/5.0121558

    Topics