Energy spread minimization in a beam-driven plasma wakefield accelerator

被引:0
|
作者
R. Pompili
D. Alesini
M. P. Anania
M. Behtouei
M. Bellaveglia
A. Biagioni
F. G. Bisesto
M. Cesarini
E. Chiadroni
A. Cianchi
G. Costa
M. Croia
A. Del Dotto
D. Di Giovenale
M. Diomede
F. Dipace
M. Ferrario
A. Giribono
V. Lollo
L. Magnisi
M. Marongiu
A. Mostacci
L. Piersanti
G. Di Pirro
S. Romeo
A. R. Rossi
J. Scifo
V. Shpakov
C. Vaccarezza
F. Villa
A. Zigler
机构
[1] Laboratori Nazionali di Frascati,Racah Institute of Physics
[2] Sapienza University,undefined
[3] University of Rome Tor Vergata and INFN,undefined
[4] INFN Milano,undefined
[5] Hebrew University,undefined
来源
Nature Physics | 2021年 / 17卷
关键词
D O I
暂无
中图分类号
学科分类号
摘要
Next-generation plasma-based accelerators can push electron bunches to gigaelectronvolt energies within centimetre distances1,2. The plasma, excited by a driver pulse, generates large electric fields that can efficiently accelerate a trailing witness bunch3–5, enabling the realization of laboratory-scale applications ranging from high-energy colliders6 to ultrabright light sources7. So far, several experiments have demonstrated large accelerations8–10 but the resulting beam quality, particularly the energy spread, is still far from state-of-the-art conventional accelerators. Here we show the results of a beam-driven plasma acceleration experiment where we used an electron bunch as a driver followed by an ultrashort witness bunch. By setting a positive energy chirp on the witness bunch, its longitudinal phase space is rotated during acceleration, resulting in an ultralow energy spread that is even lower than the spread at the plasma entrance. This result will significantly impact the optimization of the plasma acceleration process and its implementation in forthcoming compact machines for user-oriented applications.
引用
收藏
页码:499 / 503
页数:4
相关论文
共 50 条
  • [1] Energy spread minimization in a beam-driven plasma wakefield accelerator
    Pompili, R.
    Alesini, D.
    Anania, M. P.
    Behtouei, M.
    Bellaveglia, M.
    Biagioni, A.
    Bisesto, F. G.
    Cesarini, M.
    Chiadroni, E.
    Cianchi, A.
    Costa, G.
    Croia, M.
    Del Dotto, A.
    Di Giovenale, D.
    Diomede, M.
    Dipace, F.
    Ferrario, M.
    Giribono, A.
    Lollo, V
    Magnisi, L.
    Marongiu, M.
    Mostacci, A.
    Piersanti, L.
    Di Pirro, G.
    Romeo, S.
    Rossi, A. R.
    Scifo, J.
    Shpakov, V
    Vaccarezza, C.
    Villa, F.
    Zigler, A.
    NATURE PHYSICS, 2021, 17 (04) : 499 - +
  • [2] 9 GeV energy gain in a beam-driven plasma wakefield accelerator
    Litos, M.
    Adli, E.
    Allen, J. M.
    An, W.
    Clarke, C. I.
    Corde, S.
    Clayton, C. E.
    Frederico, J.
    Gessner, S. J.
    Green, S. Z.
    Hogan, M. J.
    Joshi, C.
    Lu, W.
    Marsh, K. A.
    Mori, W. B.
    Schmeltz, M.
    Vafaei-Najafabadi, N.
    Yakimenko, V.
    PLASMA PHYSICS AND CONTROLLED FUSION, 2016, 58 (03)
  • [3] Demonstration of a positron beam-driven hollow channel plasma wakefield accelerator
    Gessner, Spencer
    Adli, Erik
    Allen, James M.
    An, Weiming
    Clarke, Christine I.
    Clayton, Chris E.
    Corde, Sebastien
    Delahaye, J. P.
    Frederico, Joel
    Green, Selina Z.
    Hast, Carsten
    Hogan, Mark J.
    Joshi, Chan
    Lindstrom, Carl A.
    Lipkowitz, Nate
    Litos, Michael
    Lu, Wei
    Marsh, Kenneth A.
    Mori, Warren B.
    O'Shea, Brendan
    Vafaei-Najafabadi, Navid
    Walz, Dieter
    Yakimenko, Vitaly
    Yocky, Gerald
    NATURE COMMUNICATIONS, 2016, 7
  • [4] Demonstration of a positron beam-driven hollow channel plasma wakefield accelerator
    Spencer Gessner
    Erik Adli
    James M. Allen
    Weiming An
    Christine I. Clarke
    Chris E. Clayton
    Sebastien Corde
    J. P. Delahaye
    Joel Frederico
    Selina Z. Green
    Carsten Hast
    Mark J. Hogan
    Chan Joshi
    Carl A. Lindstrøm
    Nate Lipkowitz
    Michael Litos
    Wei Lu
    Kenneth A. Marsh
    Warren B. Mori
    Brendan O’Shea
    Navid Vafaei-Najafabadi
    Dieter Walz
    Vitaly Yakimenko
    Gerald Yocky
    Nature Communications, 7
  • [5] Transformer ratio saturation in a beam-driven wakefield accelerator
    Farmer, J. P.
    Martorelli, R.
    Pukhov, A.
    PHYSICS OF PLASMAS, 2015, 22 (12)
  • [6] Free-electron lasing with compact beam-driven plasma wakefield accelerator
    Pompili, R.
    Alesini, D.
    Anania, M. P.
    Arjmand, S.
    Behtouei, M.
    Bellaveglia, M.
    Biagioni, A.
    Buonomo, B.
    Cardelli, F.
    Carpanese, M.
    Chiadroni, E.
    Cianchi, A.
    Costa, G.
    Del Dotto, A.
    Del Giorno, M.
    Dipace, F.
    Doria, A.
    Filippi, F.
    Galletti, M.
    Giannessi, L.
    Giribono, A.
    Iovine, P.
    Lollo, V
    Mostacci, A.
    Nguyen, F.
    Opromolla, M.
    Di Palma, E.
    Pellegrino, L.
    Petralia, A.
    Petrillo, V
    Piersanti, L.
    Di Pirro, G.
    Romeo, S.
    Rossi, A. R.
    Scifo, J.
    Selce, A.
    Shpakov, V
    Stella, A.
    Vaccarezza, C.
    Villa, F.
    Zigler, A.
    Ferrario, M.
    NATURE, 2022, 605 (7911) : 659 - +
  • [7] Free-electron lasing with compact beam-driven plasma wakefield accelerator
    R. Pompili
    D. Alesini
    M. P. Anania
    S. Arjmand
    M. Behtouei
    M. Bellaveglia
    A. Biagioni
    B. Buonomo
    F. Cardelli
    M. Carpanese
    E. Chiadroni
    A. Cianchi
    G. Costa
    A. Del Dotto
    M. Del Giorno
    F. Dipace
    A. Doria
    F. Filippi
    M. Galletti
    L. Giannessi
    A. Giribono
    P. Iovine
    V. Lollo
    A. Mostacci
    F. Nguyen
    M. Opromolla
    E. Di Palma
    L. Pellegrino
    A. Petralia
    V. Petrillo
    L. Piersanti
    G. Di Pirro
    S. Romeo
    A. R. Rossi
    J. Scifo
    A. Selce
    V. Shpakov
    A. Stella
    C. Vaccarezza
    F. Villa
    A. Zigler
    M. Ferrario
    Nature, 2022, 605 : 659 - 662
  • [8] Beam emittance preservation using Gaussian density ramps in a beam-driven plasma wakefield accelerator
    Litos, M. D.
    Ariniello, R.
    Doss, C. E.
    Hunt-Stone, K.
    Cary, J. R.
    PHILOSOPHICAL TRANSACTIONS OF THE ROYAL SOCIETY A-MATHEMATICAL PHYSICAL AND ENGINEERING SCIENCES, 2019, 377 (2151):
  • [9] Gas-dynamic density downramp injection in a beam-driven plasma wakefield accelerator
    Cabadag, J. P. Couperus
    Pausch, R.
    Schoebel, S.
    Bussmann, M.
    Chang, Y-Y
    Corde, S.
    Debus, A.
    Ding, H.
    Doepp, A.
    Foerster, F. M.
    Gilljohann, M.
    Haberstroh, F.
    Heinemann, T.
    Hidding, B.
    Karsch, S.
    Koehler, A.
    Kononenko, O.
    Knetsch, A.
    Kurz, T.
    de la Ossa, A. Martinez
    Nutter, A.
    Raj, G.
    Steiniger, K.
    Schramm, U.
    Ufer, P.
    Irman, A.
    PHYSICAL REVIEW RESEARCH, 2021, 3 (04):
  • [10] Witness electron beam injection using an active plasma lens for a proton beam-driven plasma wakefield accelerator
    Kim, S- Y.
    Moon, K.
    Chung, M.
    Sjobak, K. N.
    Adli, E.
    Dayyani, M.
    Doebert, S.
    Yoon, E. S.
    Nam, I.
    Hahn, G.
    PHYSICAL REVIEW ACCELERATORS AND BEAMS, 2021, 24 (12)