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| Content Provider | IEEE Xplore Digital Library | 
|---|---|
| Author | Pappas, G.C. Donaldson, A.R. Williams, D. | 
| Copyright Year | 1997 | 
| Description | Author affiliation: Linear Accel. Center, Stanford Univ., CA, USA (Pappas, G.C.) | 
| Abstract | PEP II or the B-Factory consists of two asymmetric storage rings. The injection energy for electrons is 9 GeV, while that for positrons is 3.1 GeV. The bend angle into the high energy ring (HER) is 0.35 m-rad, and the angle into the low energy ring (LER) is 0.575 m-rad. The magnetic length for the HER kicker is 0.85 m, and 0.55 m for the LER kicker. The field produced by the magnet is therefore 123.5 G for the HER, and 132 G for the LER. Each ring has a kicker magnet upstream of the injection line which is used to distort the orbit of the stored beam. An identical magnet downstream of the injection line is used to restore the orbit of the stored beam and inject the incoming beam. The two magnets are driven in parallel by the modulator. The aperture of the magnets is 3.86/spl times/3.46 cm (H/spl times/V). Therefore the current required to drive the HER is 863 A, while for the LER it is 756 A. The inductance of the magnet is approximately 1.4 /spl mu/H/m. The current pulse is a critically damped sinusoid with a rise time of less than 300 ns. A kicker system has been designed which can be used for injection of both beams by varying the charge voltage. The modulator uses a conjugate circuit to match the impedance of the magnet, and coupling to the beam chamber. | 
| Starting Page | 390 | 
| Ending Page | 392 | 
| File Size | 257442 | 
| Page Count | 3 | 
| File Format | |
| ISBN | 078034376X | 
| DOI | 10.1109/PAC.1997.749661 | 
| Language | English | 
| Publisher | Institute of Electrical and Electronics Engineers, Inc. (IEEE) | 
| Publisher Date | 1997-05-16 | 
| Access Restriction | Subscribed | 
| Rights Holder | Institute of Electrical and Electronics Engineers, Inc. (IEEE) | 
| Subject Keyword | Magnetic modulators Storage rings Electrons Positrons Apertures Inductance Voltage Optical modulation Magnetic circuits Impedance | 
| Content Type | Text | 
| Resource Type | Article | 
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