Synchrotron apparatus

Electric lamp and discharge devices: systems – Pulsating or a.c. supply – Plural load device systems

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328228, 315 542, H05H 1304

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active

047806834

ABSTRACT:
A synchrotron apparatus comprising an RF accelerating cavity, a pair of bending magnets, a pair of focusing magnets, and a pair of defocusing magnets, respectively, for accelerating, bending, focusing, and defocusing the particle beam to accelerate and/or store the particle beam, and a beam-cooling high-frequency accelerating cavity for generating a high-frequency electromagnetic field of an even TM-mode number in relation to direction transverse to the particle beam to decrease energy dispersion of the particle beam. Further, the RF accelerating cavity in the synchrotron apparatus provides a fundamental-mode exciting unit for exciting a fundamental-mode electromagnetic field, a detector for detecting phase and strength of respective higher-mode electromagnetic fields other than the fundamental-mode electromagnetic field, and exciting means for exciting a higher-mode electromagnetic field which is in antiphase with and has the same strength as the detected higher-mode electromagnetic field in accordance with the result of the detection by the detector so as to weaken the strength of the detected higher-mode electromagnetic field.

REFERENCES:
patent: 3333142 (1967-07-01), Takeda et al.
patent: 3412337 (1968-11-01), Lothrop
patent: 3952255 (1976-04-01), Passow
patent: 4623847 (1986-11-01), Anderberg et al.
patent: 4737727 (1988-04-01), Yamada et al.
"RF System for Slac Storage Ring" 1971 pp. 253-254 IEEE Transactions ns-18.
"Theoretical Aspects of the Behaviour of Beams in Accelerators and Storage Rings", CERN, Geneva, 1977.
"Design Study Note of Super SOR (A 1 GeV Electron Storage Ring for Intense Synchrotron Radiation)", ISSP, No. 19, Jan. 1984.
"Superconducting Racetrack Electron Storage Ring and Coexistent Injector Microtron for Synchrotron Radiation", ISSP, No. 21, Sep. 1984.

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