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Some Aspects of the Two Beam Performance of DCI.

Author: Krishnagopal, S.; Siemann, R.H.; Accelerator & amp; Fusion Research Division; Lawrence Berkeley National Laboratory.; United States. Department of Energy. Office of Scientific and Technical Information.
Publisher: Berkeley, Calif. : Lawrence Berkeley National Laboratory ; Oak Ridge, Tenn. : Distributed by the Office of Scientific and Technical Information, U.S. Dept. of Energy, 1991.
Edition/Format:   eBook : Document : National government publication : English
Database:WorldCat
Summary:
The results of beam-beam simulations that model DCI operating as an ee⁻ collider are reported. The simulation techniques, including a new procedure for incorporating synchrotron radiation, are described. Phase advance errors between the interaction points explain the beam-beam limit at the operating point q(subscript x) = q{sub y} = 0.725 (q denotes the fractional part of the tune). The effects of radiation damping  Read more...
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Material Type: Document, Government publication, National government publication, Internet resource
Document Type: Internet Resource, Computer File
All Authors / Contributors: Krishnagopal, S.; Siemann, R.H.; Accelerator & amp; Fusion Research Division; Lawrence Berkeley National Laboratory.; United States. Department of Energy. Office of Scientific and Technical Information.
OCLC Number: 727179678
Notes: Published through the Information Bridge: DOE Scientific and Technical Information.
09/01/1991.
"Lbl-31227."
Nuclear Instruments and Methods A FT.
Krishnagopal, S.; Siemann, R.H.
Accelerator & amp.
Fusion Research Division.
Description: 27 : digital, PDF file

Abstract:

The results of beam-beam simulations that model DCI operating as an ee⁻ collider are reported. The simulation techniques, including a new procedure for incorporating synchrotron radiation, are described. Phase advance errors between the interaction points explain the beam-beam limit at the operating point q(subscript x) = q{sub y} = 0.725 (q denotes the fractional part of the tune). The effects of radiation damping are also studied near that operating point. Simulation and experiments disagree in a second operating region, q(subscript x) = q{sub y} (almost equal to) 0.795, indicating additional physics outside the scope of our model.

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