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000408372 0247_ $$2datacite_doi$$a10.3204/DESY-PROC-2013-04/karuza_marin
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000408372 1001_ $$0P:(DE-HGF)0$$aKaruza, M.$$b0$$eCorresponding author
000408372 1112_ $$0C13-06-24.5$$2inspire$$a9th Patras Workshop on Axions, WIMPs and WISPs$$cMainz$$d2013-06-24 - 2013-06-28$$gAXION-WIMP 2013$$wGermany
000408372 245__ $$aOptomechanics and astroparticle physics; an (im)possible union
000408372 260__ $$aHamburg$$bVerlag Deutsches Elektronen-Synchrotron$$c2013
000408372 29510 $$aKaruza, M. "Optomechanics and astroparticle physics; an (im)possible union" in Proceedings, 9th Patras Workshop on Axions, WIMPs and WISPs (AXION-WIMP 2013) / Oberlack, Uwe, Sissol, Pierre (eds.), 2013 ; AXION-WIMP 2013 : 9th Patras Workshop on Axions, WIMPs and WISPs , 2013-06-23 - 2013-06-28, Mainz
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000408372 520__ $$aIn recent year with the advent of optomechanics, physics has gained a new powerful tool for small displacement and small forces sensing.  It is based on two key ingredients, a resonant optical cavity and a micro-fabricated mechanical resonator.  By coupling the two by radiation pressure a powerful tool, capable of sensing extremely small signals at sensitivity limit imposed by Heisenberg uncertainty principle, can be constructed. Here we will try to exploit it’s extraordinary sensitivity for detection of radiation pressure exerted by hypothetical particles that could be produced in the Sun’s interior.
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000408372 7870_ $$0PUBDB-2015-05816$$aOberlack, Uwe et. al.$$iisPartOf$$rDESY-PROC-2013-04$$tProceedings, 9th Patras Workshop on Axions, WIMPs and WISPs (AXION-WIMP 2013)
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