1997
DOI: 10.1088/0029-5515/37/2/i08
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High power density electron cyclotron experiments in the L2M stellarator

Abstract: The results of electron cyclotron heating (ECH) experiments in the L-2M stellarator are presented. The main goal of the experiments is to investigate the physics of ECH and of plasma confinement at high values of the volume heating power density. A current free plasma is produced and heated by extraordinary waves at the second harmonic of the electron cyclotron frequency ( omega 0=2 omega ce). The experimental results are compared with the empirical LHD scaling and with numerical simulations of plasma confinem… Show more

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Cited by 37 publications
(3 citation statements)
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“…ECRH has been used effectively for pre-ionization and start-up assist in many tokamaks and is used routinely for plasma production in stellarators (Lloyd et al 1991, Erckmann andGasparino 1994 andreferences therein;Yao et al 1994, Zhang et al 1995, Abrakov et al 1997. In tokamaks the confinement is poor during start-up, which as a consequence is very sensitive to stray magnetic fields, whereas in stellarators the external coils provide magnetic confinement during breakdown.…”
Section: Pre-ionization and Start-upmentioning
confidence: 99%
“…ECRH has been used effectively for pre-ionization and start-up assist in many tokamaks and is used routinely for plasma production in stellarators (Lloyd et al 1991, Erckmann andGasparino 1994 andreferences therein;Yao et al 1994, Zhang et al 1995, Abrakov et al 1997. In tokamaks the confinement is poor during start-up, which as a consequence is very sensitive to stray magnetic fields, whereas in stellarators the external coils provide magnetic confinement during breakdown.…”
Section: Pre-ionization and Start-upmentioning
confidence: 99%
“…The L-2M stellarator is an l = 2 stellarator with a major radius of R = 100 cm and a mean plasma radius of r = 11.5 cm [8]. The plasma was created and heated by one or two 75 GHz gyrotrons under electron cyclotron resonance conditions (ECRH) at the second harmonic of the electron gyrofrequency (the magnetic field at the axis was B t = 1.3-1.4 T).…”
Section: Analysis Of Turbulent Fluxesmentioning
confidence: 99%
“…5 When these devices are operated at high plasma densities (overdense plasma, pe Ͼ ce ), direct ECR heating and current drive by the incident electromagnetic (EM) wave are not possible. Alternatively, linear conversion of the EM waves into the electrostatic electron Bernstein wave (EBW) 6 at the upper hybrid resonance (UHR) surface and subsequent damping at the cyclotron harmonics is being tried for overdense plasmas.…”
Section: Introductionmentioning
confidence: 99%