Report CTSL-13 CALIFORNIA INSTITUTE OF TECHNOLOGY Synchrotron Laboratory Pasadena, California CAPTURE EFFICIENCY OF A CONSTANT GRADIENT ELECTRON SYNCHROTRON
نویسنده
چکیده
The problem of high-energy multi-turn injection into a constant gradient electron synchrotron from a linear accelerator has been studied. The injected beam is characterized by a constant current with a well defined duration, a uniform energy distribution, and unspecified distri butions in vertical and radial phase space. Calculations yielding the optimum synchrotron parameters and surfaces of capture efficiency over the radial phase space have been made assuming an idealized synchrotron with the design parameters of the Caltech machine. On the basis of these calculations and the parameters of a commercially available linac, an upper limit of 1012 captured electrons for 10 Mev injection and half that at 5 Mev can be set.
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Report CTSL-30 CALIFORNIA INSTITUTE OF TECHNOLOGY Synchrotron Laboratory Pasadena, California A N ACHROMATIC INFLECTOR FOR T H E CALTECH SYNCHROTRON
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Report CTSL-19 CALIFORNIA INSTITUTE OF TECHNOLOGY Synchrotron Laboratory Pasadena, California BROKEN SYMMETRIES AND BARE COUPLING CONSTANTS
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Report CTSL-25 CALIFORNIA INSTITUTE OF TECHNOLOGY Synchrotron Laboratory Pasadena, California EFFECTS OF MAGNET NON-LINEARITIES ON BETATRON OSCILLATION FREQUENCIES FOR THE 300 BEV PROTON SYNCHROTRON
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Report CTSL-21 CALIFORNIA INSTITUTE OF TECHNOLOGY Synchrotron Laboratory Pasadena, California R.F. SYNCHRONIZATION DURING TRANSFER IN THE CASCADE SYNCHROTRON
If a low energy synchrotron is to be used as an injector for a 300 Bev machine, the problem may arise of synchronizing the two R.F. systems at transfer time in order that a bunch of protons in the injector may be transferred to a bucket in the main machine without loss of particles. A possible synchronization scheme is proposed and investigated here.
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Recent theoretical investigations of high energy nucleon-nucleon collisions1) support the two-center model of multiple meson production as discussed by Ciok, et al.2 ) . To facilitate a prediction of the most probable distribution of shower particles as a function of laboratory energy, Farley's kinematical treatment of the "two-fireball" model is employed 3). A statistical determination of the ...
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تاریخ انتشار 2016