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000220362 0247_ $$2datacite_doi$$a10.3204/DESY-THESIS-2015-020
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000220362 1001_ $$0P:(DE-H253)PIP1013508$$aAdeyemi, Olufemi Segun$$b0$$eCorresponding author$$gmale
000220362 245__ $$aLinear Acoustic Waves Induced in a Cylindrical Solid Target by Particle Beam in $e^{-} - e^{+}$ Colliders$$f2010-12-01 - 2015-05-20
000220362 260__ $$aHamburg$$bVerlag Deutsches Elektronen-Synchrotron$$c2015
000220362 300__ $$a178
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000220362 4900_ $$0PERI:(DE-600)1437131-5$$aDESY-THESIS$$x1435-8085
000220362 502__ $$aUniversität Hamburg, Diss., 2015$$bDr.$$cUniversität Hamburg$$d2015
000220362 520__ $$aA future high energy lepton collider will demand high luminosities to achieve its physics goals. For the electron-positron linear collider, the generation of the desired amount of positrons is a non-trivial problem: the positron production target has to survive huge amounts of energy deposited by the bombardment of intense beams of electrons or photons. This causes a rapid increase of the temperature in the target within a very short time period. The resulting deformation due to the induced pressure waves can substantially shorten the operating life-span of the target material. In this work, we study linear effects of induced stress in a solid target through pressure acoustic waves using continuum mechanics. We derived analytical solutions for different cases and imposed different boundary conditions. The application of the model to the SLC positron target gave us the results which are in agreement with the existing literature. In a similar manner, we investigated the effect of single and multiple photon bunches on the conversion target for ILC.
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000220362 9201_ $$0I:(DE-H253)FLC-20120731$$kFLC$$lExperimente an Lepton Collidern$$x1
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