2018
DOI: 10.1017/s0022377818000971
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Stabilization of magnetic mirror machine using rotating magnetic field

Abstract: An increase in symmetry is observed for a low density non-collisional plasma, in a simple magnetic mirror machine, due to the application of external oscillating magnetic fields of 1.5 MHz frequency. The increase in symmetry is attributed to an increase in stability of the flute mode and is dependent on the field’s polarization and trap magnetic field strength.

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Cited by 8 publications
(5 citation statements)
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“…Beneficially, fast-ion FLR effects may mitigate turbulence as well as interchange modes by averaging over small fluctuations (k ⊥ ρ 1). An absence of turbulence was observed by TAE that was attributed to fast ions (Schmitz et al 2016). In tokamaks as well, experimental measurements on the Tokamak Fusion Test Reactor (TFTR) show that α-particles exhibit classical diffusion due to the FLR effect (Zweben et al 1997).…”
Section: Anisotropic Mhd Equilibrium and Ambipolar Potentialmentioning
confidence: 99%
See 1 more Smart Citation
“…Beneficially, fast-ion FLR effects may mitigate turbulence as well as interchange modes by averaging over small fluctuations (k ⊥ ρ 1). An absence of turbulence was observed by TAE that was attributed to fast ions (Schmitz et al 2016). In tokamaks as well, experimental measurements on the Tokamak Fusion Test Reactor (TFTR) show that α-particles exhibit classical diffusion due to the FLR effect (Zweben et al 1997).…”
Section: Anisotropic Mhd Equilibrium and Ambipolar Potentialmentioning
confidence: 99%
“…2019), ponderomotive effects (Ferron et al. 1987), rotating magnetic fields (Seemann, Be'ery & Fisher 2018; Zhu et al. 2019), close fitting conducting shells (Kesner 1985; Beklemishev 2016; Kotelnikov et al.…”
Section: Performance Modelling Of Whammentioning
confidence: 99%
“…The application of rotating magnetic field perpendicular to the trap's axis with frequencies close to the ion-cyclotron frequency demonstrated stabilization of mirror-confined and field-reversed-configuration plasma in several experiments (Ferron et al. 1987; Seemann, Be'ery & Fisher 2018; Zhu et al. 2019).…”
Section: Magnetohydrodynamic Stabilitymentioning
confidence: 99%
“…The basic physics of MMM plasma confinement can be studied and demonstrated in a small size facility with medium temperature plasma. A proposed demonstrator is based on the current mirror machine at RPL [23]. The typical parameters of the machine with RMF heating are given in table 2.…”
Section: Concept Demonstratormentioning
confidence: 99%