CERN Accelerating science

002750790 001__ 2750790
002750790 003__ SzGeCERN
002750790 005__ 20210209110744.0
002750790 0247_ $$2DOI$$9IOP$$a10.1088/1742-6596/1690/1/012041
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002750790 035__ $$9Inspire$$a1838578
002750790 041__ $$aeng
002750790 100__ $$aAlozy, J$$uCERN
002750790 245__ $$9IOP$$aRegistration of the transition radiation with GaAs detector: Data/MC comparison
002750790 260__ $$c2020
002750790 300__ $$a8 p
002750790 520__ $$9IOP$$aNew developments of pixel detectors based on GaAs sensors offer effective registration of the transition radiation (TR) X-rays and perform simultaneous measurements of their energies and emission angles. This unique feature opens new possibilities for particle identification on the basis of maximum available information about generated TR photons. Results of studies of TR energy-angular distributions using a 500 |j.m thick GaAs sensor attached to a Timepix3 chip are presented. Measurements, analysis techniques and a comparison with Monte Carlo (MC) simulations are described and discussed.
002750790 540__ $$aCC-BY-3.0$$bIOP$$uhttp://creativecommons.org/licenses/by/3.0
002750790 65017 $$2SzGeCERN$$aDetectors and Experimental Techniques
002750790 690C_ $$aARTICLE
002750790 690C_ $$aCERN
002750790 700__ $$aBelyaev, N
002750790 700__ $$aBergmann, B L$$uIEAP CTU, Prague
002750790 700__ $$aBilloud, T R V$$uIEAP CTU, Prague
002750790 700__ $$aBroulim, P$$uPilsen, Coll. Mech. Elect. Eng.
002750790 700__ $$aBurian, P$$uIEAP CTU, Prague$$uPilsen, Coll. Mech. Elect. Eng.$$vFaculty of Electrical Engineering, University of West Bohemia in Pilsen
002750790 700__ $$aCampbell, M$$uCERN
002750790 700__ $$aChelkov, G$$uDubna, JINR
002750790 700__ $$aCherry, M$$uLouisiana State U.
002750790 700__ $$aDachs, F$$uCERN$$vTechnical University of Vienna
002750790 700__ $$aDoronin, S$$uMoscow Phys. Eng. Inst.
002750790 700__ $$aFilippov, K$$uMoscow Phys. Eng. Inst.
002750790 700__ $$aFusco, P$$uINFN, Bari$$vDipartimento di Fisica "M. Merlin" dell'Universita e del Politecnico di Bari
002750790 700__ $$aGargano, F$$uBari U.
002750790 700__ $$aHeijne, E H M$$uIEAP CTU, Prague$$uCERN$$vInstitute of Experimental and Applied Physics, Czech Technical University in Prague
002750790 700__ $$aKonovalov, S$$uLPI, Moscow (main)
002750790 700__ $$aCudie, X Llopart$$uCERN
002750790 700__ $$aLoparco, F$$uINFN, Bari$$uBari U.$$vDipartimento di Fisica "M. Merlin" dell'Universita e del Politecnico di Bari
002750790 700__ $$aMazziotta, M N$$uBari U.
002750790 700__ $$aMeduna, L$$uIEAP CTU, Prague
002750790 700__ $$aPernegger, H$$uCERN
002750790 700__ $$aPonomarenko, D$$uMoscow Phys. Eng. Inst.
002750790 700__ $$aPospisil, S$$uIEAP CTU, Prague
002750790 700__ $$aRastorguev, D$$uDubna, JINR
002750790 700__ $$aRembser, C$$uCERN
002750790 700__ $$aRomaniouk, A$$uMoscow Phys. Eng. Inst.
002750790 700__ $$aSavchenko, A A$$uMoscow Phys. Eng. Inst.$$vBelgorod National Research University, 85, Pobedy St., Belgorod, 308015, Russia
002750790 700__ $$aSchioppa, E J$$uSalento U.
002750790 700__ $$aSmirnov, S$$uMoscow Phys. Eng. Inst.
002750790 700__ $$aSmirnov, Y$$uMoscow Phys. Eng. Inst.
002750790 700__ $$aSmolyanskiy, P$$uIEAP CTU, Prague
002750790 700__ $$aSpinelli, P$$uINFN, Bari$$vDipartimento di Fisica "M. Merlin" dell'Universita e del Politecnico di Bari
002750790 700__ $$aStrikhanov, M$$uMoscow Phys. Eng. Inst.
002750790 700__ $$aTeterin, P$$uMoscow Phys. Eng. Inst.
002750790 700__ $$aTikhomirov, V$$uLebedev Inst.
002750790 700__ $$aVorobev, K$$uMoscow Phys. Eng. Inst.
002750790 700__ $$aZhukov, K$$uLebedev Inst.
002750790 773__ $$01838300$$c012041$$n1$$pJ. Phys.: Conf. Ser.$$v1690$$wC20-10-05$$y2020
002750790 8564_ $$82276137$$s1133245$$uhttps://cds.cern.ch/record/2750790/files/Alozy_2020_J._Phys.__Conf._Ser._1690_012041.pdf$$yFulltext
002750790 960__ $$a13
002750790 962__ $$b2718781$$k012041$$nmoscow20201005
002750790 980__ $$aARTICLE
002750790 980__ $$aConferencePaper