| Ferrite HOM Absorber for the RHIC ERL | |
| Hahn,H. ; Choi, E.M. ; Hammons, L. | |
| 关键词: BNL; CAVITIES; COMPUTERIZED SIMULATION; CONSTRUCTION; COPPER; DAMPING; ENERGY RECOVERY; FERRITE; LINEAR ACCELERATORS; NIOBIUM; PERMEABILITY; | |
| DOI : 10.2172/939995 RP-ID : BNL--81608-2008-IR PID : OSTI ID: 939995 Others : R&D Project: 18054 Others : Other: KB0202011 Others : TRN: US0807101 |
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| 学科分类:核物理和高能物理 | |
| 美国|英语 | |
| 来源: SciTech Connect | |
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【 摘 要 】
A superconducting Energy Recovery Linac is under construction at Brookhaven National Laboratory to serve as test bed for RHIC upgrades. The damping of higher-order modes in the superconducting five-cell cavity for the Energy-Recovery linac at RHIC is performed exclusively by two ferrite absorbers. The ferrite properties have been measured in ferrite-loaded pill box cavities resulting in the permeability values given by a first-order Debye model for the tiled absorber structure and an equivalent permeability value for computer simulations with solid ring dampers. Measured and simulated results for the higher-order modes in the prototype copper cavity are discussed. First room-temperature measurements of the finished niobium cavity are presented which confirm the effective damping of higher-order modes in the ERL. by the ferrite absorbers.
【 预 览 】
| Files | Size | Format | View |
|---|---|---|---|
| RO201705180000695LZ | 4570KB |
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