Please use this identifier to cite or link to this item: http://hdl.handle.net/10071/32805
Author(s): Verra, L.
Amoedo, C.
Torrado, N.
Clairembaud, A.
Mezger, J.
Pannell, F.
Pucek, J.
van Gils, N.
Bergamaschi, M.
Della Porta, G. Z.
Lopes, N.
Sublet, A.
Turner, M.
Gschwendtner, E.
Muggli, P.
Agnello, R.
Ahdida, C. C.
Andrebe, Y.
Apsimon O.
Apsimon R
Arnesano, J. M.
Bencini, V.
Blanchard, P.
Burrows, P. N.
Buttenschön, B.
Caldwell, A.
Chung, M.
Cooke, D. A.
Davut, C.
Demeter, G.
Dexter, A. C.
Doebert, S.
Farmer, J.
A. Fasoli
Fonseca, R. A.
Furno, I.
Granados, E.
Granetzny, M.
Graubner, T.
Grulke, O.
Guran, E. D.
Henderson, J. R.
Kedves, M. Á.
Krausz F
Krupa, M.
Lefevre, T.
Liang, L.
Liu, S.
Lotov, K.
Martinez Calderon, M.
Mazzoni, S.
Moon, K.
Morales Guzmán, P. I.
Moreira, M. T.
Nechaeva, T.
Okhotnikov, N.
Pakuza, C.
Pardons, A.
Pepitone, K.
Poimendidou, E.
Pukhov, A.
Ramjiawan, R. L.
Ranc, L.
Rey, S.
Rossel, R.
Saberi, H.
Schmitz, O.
Senes, E.
Silva, F.
Silva, L.
Spear, B
Stollberg, C.
Swain, C.
Topaloudis, A.
Tuev, P.
Velotti, F.
Verzilov, V
Vieira, J.
Walter, E.
Welsch C.
Wendt, M.
Wing, M.
Wolfenden, J.
Woolley, B.
Xia, G.
Yarygova, V.
Zepp, M.
Date: 2024
Title: Filamentation of a relativistic proton bunch in plasma
Journal title: Physical Review E
Volume: 109
Number: 5
Reference: Verra, L., Amoedo, C., Torrado, N., Clairembaud, A., Mezger, J., Pannell, F., Pucek, J., van Gils, N., Bergamaschi, M., Della Porta, G. Z., Lopes, N., Sublet, A., Turner M., Gschwendtner, E., Muggli, P., Agnello, R., Ahdida, C. C., Andrebe, Y., Apsimon O., ... Zepp, M. (2024). Filamentation of a relativistic proton bunch in plasma. Physical Review E, 109(5), 055203. https://doi.org/10.1103/PhysRevE.109.055203
ISSN: 2470-0045
DOI (Digital Object Identifier): 10.1103/PhysRevE.109.055203
Abstract: We show in experiments that a long, underdense, relativistic proton bunch propagating in plasma undergoes the oblique instability, which we observe as filamentation. We determine a threshold value for the ratio between the bunch transverse size and plasma skin depth for the instability to occur. At the threshold, the outcome of the experiment alternates between filamentation and self-modulation instability (evidenced by longitudinal modulation into microbunches). Time-resolved images of the bunch density distribution reveal that filamentation grows to an observable level late along the bunch, confirming the spatiotemporal nature of the instability. We provide a rough estimate of the amplitude of the magnetic field generated in the plasma by the instability and show that the associated magnetic energy increases with plasma density
Peerreviewed: yes
Access type: Open Access
Appears in Collections:CTI-RI - Artigos em revistas científicas internacionais com arbitragem científica

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