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Merging Startup Experiments on the UTST Spherical Tokamak

Plasma and Fusion Research · 2010 · Vol. 5 · pp. S2100–S2100
Takuma YamadaRyota ImazawaS. KamioRyuma HiharaKeita AbeMorio SakumuraQinghong CaoT. OosakoHiroaki KobayashiT. WakatsukiB. I. AnY. NagashimaHajime SakakitaHaruhisa KoguchiS. KiyamaY. HiranoMichiaki InomotoA. EjiriY. TakaseYasushi Ono

Abstract

The University of Tokyo Spherical Tokamak (UTST) was constructed to explore the formation of ultrahigh-beta spherical tokamak (ST) plasmas using double null plasma merging. The main feature of the UTST is that the poloidal field coils are located outside the vacuum vessel to demonstrate startup in a reactor-relevant situation. Initial operations used partially completed power supplies to investigate the appropriate conditions for plasma merging. The plasma current of the merged ST reached 100 kA when the central solenoid coil was used to assist plasma formation. Merging of two ST plasmas through magnetic reconnection was successfully observed using two-dimensional pickup coil arrays, which directly measure the toroidal and axial magnetic fields inside the UTST vacuum vessel. The resistivity of the current sheet was found to be anomalously high during merging.

Magnetic confinement fusion researchIonosphere and magnetosphere dynamicsSuperconducting Materials and ApplicationsSpherical tokamakTokamakSolenoidPlasmaToroidElectromagnetic coilPhysicsBETA (programming language)Magnetic fieldCurrent (fluid)

Funding

  • Japan Society for the Promotion of Science
Citations
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