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Dispersion in cold magnetized plasma
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Dispersion in cold magnetized plasma - Princeton

Oct 19, 2021

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Page 1: Dispersion in cold magnetized plasma - Princeton

Dispersion in cold magnetized plasma

Page 2: Dispersion in cold magnetized plasma - Princeton

JET, UKimage from euro-fusion.org

Page 3: Dispersion in cold magnetized plasma - Princeton

ICRF/HHFW antennas

ICRF antennaAlcator C‐Mod (MIT)

High harmonic fast wave antennaNSTX (PPPL)

ITER‐like ICRF antennaJET (UK)

Page 4: Dispersion in cold magnetized plasma - Princeton

ICRF/HHFW antennas

ICRF antennaAlcator C‐Mod (MIT)

High harmonic fast wave antennaNSTX (PPPL)

ITER‐like ICRF antennaJET (UK)

vacuum wavelengths are in the several‐meter rangeNSTX C‐Mod ITER

Frequency 30 MHz 80 MHz 50 MHz

Power 4 MW 6MW 20 MWPower 4 MW 6 MW 20 MW

Page 5: Dispersion in cold magnetized plasma - Princeton

Lower‐hybrid wave antennas ("grills")

LHCD on Joint European Torus (JET), UK 

Alcator C‐Mod (MIT)

Frascati Tokamak Upgrade (FTU), Italy 

Page 6: Dispersion in cold magnetized plasma - Princeton

Lower‐hybrid wave antennas ("grills")

LHCD on Joint European Torus (JET), UK 

Alcator C‐Mod (MIT)

vacuum wavelengths are in the few‐cm rangeC‐Mod JET EAST FTU

Frequency 4.6 GHz 3.7 GHz 2.45 GHz 8 GHz

Power 1 MW 12 MW 2 MW 2.2 MW

Frascati Tokamak Upgrade (FTU), Italy 

Page 7: Dispersion in cold magnetized plasma - Princeton

Electron cyclotron range: gyrotrons

Page 8: Dispersion in cold magnetized plasma - Princeton

Electron cyclotron range: gyrotrons

TCV (Switzerland), 83 GHz, 500 kW for 2 s

Page 9: Dispersion in cold magnetized plasma - Princeton

Examples of tokamak parameters