科技报告详细信息
Whistler Wave Excitation and Effects of Self-Focusing on Ion Beam Propagation through a Background Plasma along a Solenoidal Magnetic Field
Dorf, Mikhail A. ; Kaganovich, Igor D. ; Startsev, Edward A. ; Davidson, Ronald C.
Princeton University. Plasma Physics Laboratory.
关键词: Magnetic Fields;    Electromagnetic Fields;    Excitation;    70 Plasma Physics And Fusion Technology;    Ion Beams;   
RP-ID  :  PPPL-4487
RP-ID  :  DE-ACO2-09CH11466
RP-ID  :  973083
美国|英语
来源: UNT Digital Library
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【 摘 要 】

This paper extends studies of ion beam transport through a background plasma along a solenoidal magnetic field [I. Kaganovich et al., Phys. Plasmas 15, 103108 (2008)] to the important regime of moderate magnetic field strength satisfying ωce > 2βbωpe . Here, ωce and ω pe are the electron cyclotron frequency and electron plasma frequency, respectively, and βb = vb/ c is the directed ion beam velocity normalized to the speed of light. The electromagnetic field perturbations excited by the ion beam pulse in this regime are calculated analytically, and verified by comparison with the numerical simulations. The degrees of beam charge neutralization and current neutralization are estimated, and the transverse component of the Lorentz force associated with the excited electromagnetic field is calculated. It is found that the plasma response to the ion beam pulse is significantly different depending on whether the value of the solenoidal magnetic field is below or above the threshold value specified by ω cr ce = 2βbωpe, and corresponding to the resonant excitation of large-amplitude whistler waves. The use of intense whistler wave excitations for diagnostic purposes is also discussed.

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