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000301842 005__ 20211110134744.0
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000301842 1001_ $$0P:(DE-H253)PIP1001915$$aMinty, Michiko$$b0$$eCorresponding author
000301842 1112_ $$aThe 7th European Particle Accelerator Conference EPAC 2000$$cVienna$$d2000-06-26 - 2000-06-30$$gEPAC 2000$$wAustria
000301842 245__ $$aCollective Effects Associated With Ultra-High Beam Intensities in Factories
000301842 260__ $$aHamburg$$bDESY$$c2000
000301842 300__ $$a146-150
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000301842 520__ $$aThe beam currents at the new $e^+e^−$ factories exceed those of conventional colliders by more than an order of magnitude. To achieve high luminosities the multi-bunch, highcurrent beams must be both longitudinally and transversely stable. Commissioning of the $e^+e^−$ factories has provided a wealth of new experimental data on beam stability in the regime of extremely high beam intensities. Many high-current effects have been studied including ion and dust trapping, issues relating to heavy beam loading, and positron beam emittance dilutions due to electron cloud instabilities arising from photoelectrons and/or multipacting inside the vacuum chamber. This paper will review the new experimental data on high intensity issues with emphasis on new effects.
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000301842 650_7 $$2INSPIRE$$aelectron positron: storage ring
000301842 650_7 $$2INSPIRE$$aB-factory
000301842 650_7 $$2INSPIRE$$abeam instability
000301842 650_7 $$2INSPIRE$$aion: capture
000301842 650_7 $$2INSPIRE$$amatter: droplet
000301842 650_7 $$2INSPIRE$$abeam loading
000301842 650_7 $$2INSPIRE$$abeam emittance
000301842 650_7 $$2INSPIRE$$aelectron: emission
000301842 650_7 $$2INSPIRE$$aluminosity
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000301842 7870_ $$0PUBDB-2016-02907$$aDecking, Winfried$$dHamburg : DESY, 2000$$iIsPartOf$$rDESY-M-00-04; C00-06-26.2$$tContributions to the 7th European Particle Accelerator Conference EPAC 2000
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000301842 9132_ $$0G:(DE-HGF)POF3-631$$1G:(DE-HGF)POF3-630$$2G:(DE-HGF)POF3-600$$aDE-HGF$$bForschungsbereich Materie$$lMaterie und Technologie$$vAccelerator R & D$$x0
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