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- W4285307890 abstract "We have been developing a new generation accelerator named high-temperature superconducting skeleton cyclotron (HTS-SC), an extremely compact and high-intensity accelerator capable of producing 211At for targeted alpha-particle therapy, which is expected to be effective in treating advanced cancer. The coil system for HTS-SC consists of air-core multiple REBCO coils that create a high magnetic field and a high-precision magnetic field required for particle acceleration. The HTS-SC needs high-precision magnetic field distribution and temporal stability on the particle acceleration plane; however, the magnetic field induced by the screening current in the REBCO tape deteriorates the quality of the generated magnetic field spatially and changes it temporally. Therefore, we intend to confirm the electromagnetic, thermal, and mechanical properties by experiments using the ultra-baby-skeleton-cyclotron (UBSC), a small demonstration model of HTS-SC (scheduled for experiments in 2022). So, far, we have analyzed and evaluated the effect of the screening current-induced magnetic field (SCIF) on the generated magnetic field for UBSC. Based on the present research, the influence of the SCIF can be suppressed by controlling the energization current pattern. Furthermore, numerical analysis was used to verify the reduction effect of the SCIF by controlling the energization current pattern for the actual HTS-SC, advancing the HTS-SC research stage one step further." @default.
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- W4285307890 date "2022-01-01" @default.
- W4285307890 modified "2023-09-26" @default.
- W4285307890 title "Numerical evaluation of screening current-induced magnetic field in REBCO coil system for Skelton Cyclotron using a full-scale model" @default.
- W4285307890 doi "https://doi.org/10.1109/tasc.2022.3171195" @default.
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