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Simulation of Electromagnetic Wave Propagation in a Magnetospheric Plasma

Authors :
MORI, Takahiro
NISHIURA, Masaki
YOSHIDA, Zensho
KENMOCHI, Naoki
KATSURA, Shotaro
NAKAMURA, Kaori
YOKOTA, Yuuki
TSUJIMURA, Toru I.
KUBO, Shin
MORI, Takahiro
NISHIURA, Masaki
YOSHIDA, Zensho
KENMOCHI, Naoki
KATSURA, Shotaro
NAKAMURA, Kaori
YOKOTA, Yuuki
TSUJIMURA, Toru I.
KUBO, Shin
Publication Year :
2022

Abstract

The Ring Trap 1 (RT-1) device creates a laboratory magnetosphere, that is motivated by the Jovian magnetosphere, which contains self-organized, high-beta plasmas. In the RT-1 plasmas, the density limit for 8.2 GHz electron cyclotron heating (ECH) occurs at the electron densities 8.0×1017 m−3 and for 2.45 GHz ECH, 1.6×1017 m−3. We have used full-wave simulations to study the propagation and absorption of electromagnetic waves in the RT-1 plasmas in an effort to understand the observed density limits as well as the over-dense state in which the actual density exceeds the cutoff density of the magnetospheric plasma. The simulation results cannot explain the experimentally observed over-dense states and density limits in the view of the power absorption. We discuss possible reasons for the gap between the experiments and the simulation results.<br />source:https://doi.org/10.1585/pfr.14.3401134

Details

Database :
OAIster
Notes :
English
Publication Type :
Electronic Resource
Accession number :
edsoai.on1375183546
Document Type :
Electronic Resource