2 research outputs found

    Scientists Against War:A Plea to World Leaders for Better Governance

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    Š The Author(s), under exclusive licence to Springer Nature Singapore Pte Ltd.The current Russian war against Ukraine is of global concern. It builds on the annexation of Crimea in 2014 and subsequently the war in the Donbas region of Ukraine, and has become a large-scale Russian invasion of Ukraine from three directions, Crimea in the south, Russia in the east, and Belarus in the north. Despite the geopolitical background that, in the eyes of Russia, justifes its annexation of regions in and around Ukraine, we cannot turn a blind eye towards the untold miseries of the citizens of the invaded country. Although it is unclear as to how the situation will unfold, what is clear is that lives are being lost, many civilians are being injured, traumatized, and valuable assets destroyed. Taking into consideration that the population of the countries involved in this conflict totals nearly 200 million citizens, many lives on both sides will be sacrifced, millions of people displaced, Europe will be overrun with new refugees, and global world economics will be disrupted by the war itself and by the sanctions imposed on Russia.info:eu-repo/semantics/publishedVersio

    Energy calibration and resolution of the CMS electromagnetic calorimeter in pp collisions at s\sqrt{s} = 7 TeV

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    The energy calibration and resolution of the electromagnetic calorimeter (ECAL) of the CMS detector have been determined using proton-proton collision data from LHC operation in 2010 and 2011 at a centre-of-mass energy of sqrt(s)=7 TeV with integrated luminosities of about 5 inverse femtobarns. Crucial aspects of detector operation, such as the environmental stability, alignment, and synchronization, are presented. The in-situ calibration procedures are discussed in detail and include the maintenance of the calibration in the challenging radiation environment inside the CMS detector. The energy resolution for electrons from Z-boson decays is better than 2% in the central region of the ECAL barrel (for pseudorapidity abs(eta)<0.8) and is 2-5% elsewhere. The derived energy resolution for photons from 125 GeV Higgs boson decays varies across the barrel from 1.1% to 2.6% and from 2.2% to 5% in the entraps. The calibration of the absolute energy is determined from Z to e+e- decays to a precision of 0.4% in the barrel and 0.8% in the endcaps
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