Plans for longitudinal and transverse neutralized beam compression experiments, and initial results from solenoid transport experiments

被引:19
作者
Seidl, P. A. [1 ]
Armijo, J.
Baca, D.
Bieniosek, F. M.
Coleman, J.
Davidson, R. C.
Efthimion, P. C.
Friedman, A.
Gilson, E. P.
Grote, D.
Haber, I.
Henestroza, E.
Kaganovich, I.
Leitner, M.
Logan, B. G.
Molvik, A. W.
Rose, D. V.
Roy, P. K.
Sefkow, A. B.
Sharp, W. M.
Vay, J. L.
Waldron, W. L.
Welch, D. R.
Yu, S. S.
机构
[1] Univ Calif Berkeley, Lawrence Berkeley Lab, Berkeley, CA 94720 USA
[2] Lawrence Livermore Natl Lab, Livermore, CA 94550 USA
[3] Univ Maryland, College Pk, MD 20742 USA
[4] Princeton Univ, Princeton Plasma Phys Lab, Princeton, NJ 08543 USA
[5] Voss Sci, Albuquerque, NM 87108 USA
[6] Ecole Normale Super, F-75231 Paris 05, France
关键词
neutralized drift compression; charged-particle beams; particle-in-cell simulations; beam-plasma interaction;
D O I
10.1016/j.nima.2007.02.055
中图分类号
TH7 [仪器、仪表];
学科分类号
0804 ; 080401 ; 081102 ;
摘要
This paper presents plans for neutralized drift compression experiments, precursors to future target heating experiments. The target-physics objective is to study warm dense matter (WDM) using short-duration (similar to 1 ns) ion beams that enter the targets at energies just above that at which dE/dx is maximal. High intensity on target is to be achieved by a combination of longitudinal compression and transverse focusing. This work will build upon recent success in longitudinal compression, where the ion beam was compressed lengthwise by a factor of more than 50 by first applying a linear head-to-tail velocity tilt to the beam, and then allowing the beam to drift through a dense, neutralizing background plasma. Studies on a novel pulse line ion accelerator were also carried out. It is planned to demonstrate simultaneous transverse focusing and longitudinal compression in a series of future experiments, thereby achieving conditions suitable for future WDM target experiments. Future experiments may use solenoids for transverse focusing of un-neutralized ion beams during acceleration. Recent results are reported in the transport of a high-perveance heavy ion beam in a solenoid transport channel. The principal objectives of this solenoid transport experiment are to match and transport a space-charge-dominated ion beam, and to study associated electron-cloud and gas effects that may limit the beam quality in a solenoid transport system. Ideally, the beam will establish a Brillouin-flow condition (rotation at one-half the cyclotron frequency). Other mechanisms that potentially degrade beam quality are being studied, such as focusing-field aberrations, beam halo, and separation of lattice focusing elements. (c) 2007 Elsevier B.V. All rights reserved.
引用
收藏
页码:215 / 222
页数:8
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