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Cascaded parametric amplification of lower hybrid waves using electron Bernstein waves

delete2026-03-25
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A
A. Clod *
M
M. G. Senstius
J
Johan Kølsen de Wit
N
Nicolas Lopez
V
V. F. Shevchenko
S
S. K. Nielsen
DOI:10.1088/1741-4326/ae4d5bdelete
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Abstract

Abstract

En 中文
We propose a novel method for generating high-harmonic ion Bernstein waves in the lower hybrid (LH) range of frequencies—here referred to as LH waves—in the confined region of magnetized plasmas. The method relies on stimulating a cascaded parametric down-conversion of electron Bernstein waves (EBWs). In addition to a primary microwave source (such as a gyrotron), cascaded parametric amplification (CPA) of LH waves requires either a low-power EBW or a low-power LH wave for seeding. The CPA mechanism is demonstrated with a 1D Wentzel-Kramers-Brillouin (WKB) model, which is benchmarked against a fully kinetic particle-in-cell simulation, showing quantitative agreement. Our calculations predict attainable conversion efficiencies to LH waves around 10% in steady state, exceeding the Manley–Rowe limit more than tenfold. The CPA mechanism could provide a path for LH wave generation in magnetic confinement fusion reactors that rely on microwaves in the electron cyclotron range of frequencies for plasma heating.
Keywords:
lower hybrid waves
electron Bernstein waves
cascaded parametric amplification
magnetized plasmas
microwave generation
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Nuclear Fusion
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united kingdom atomic energy authority
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tokamak energy ltd
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technical university of denmark
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