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Mindur Bartosz, dr hab. inż., prof. AGH

WFiIS-kod Katedra Oddziaływań i Detekcji Cząstek

Wydział Fizyki i Informatyki Stosowanej

nauki fizyczne
100
0
mindur@agh.edu.pl
Habilitacja
Pozycjoczułe detektory gazowe w zastosowaniach eksperymentalnej fizyki cząstek elementarnych oraz wybranych metod obrazowania
Wydział:
AGH Wydział Fizyki i Informatyki Stosowanej
Data uchwały Rady Wydziału:
27.03.2017
Stopień naukowy:
dr hab. nauk fizycznych
Dyscyplina:
fizyka
Słowa kluczowe:
pozycjoczułe detektory gazowe; cząstki elementarne; fizyka eksperymentalna
Uwagi:
Pracę habilitacyjną stanowi cykl 18 publikacji z lat 2004-2016 : [1] Capeans M., [et.al.] (2004). ATLAS TRT Collaboration. Recent Aging Studies for the ATLAS Transition Radiation Tracker. IEEE Transactions On Nuclear Science, nr 51(3), s. 960–967 ; [2] Akesson T., [et.al.] (2004). ATLAS TRT Collaboration. ATLAS Transition Radiation Tracker test-beam results. Nuclear Instruments and Methods in Physics Research A, vol. 522, s. 50–55 ; [3] Akesson T., [et.al.] (2004). ATLAS TRT Collaboration. Status of design and construction of the Transition Radiation Tracker (TRT) for the ATLAS experiment at the LHC. Nuclear Instruments and Methods in Physics Research A, vol. 522, s. 131–145 ; [4] Cwetanski P., [et.al.] (2005). ATLAS TRT Collaboration. Acceptance Tests and Criteria of the ATLAS Transition Radiation Tracker. IEEE Transactions On Nuclear Science, nr 52(6), s. 2911–2916 ; [5] Deptuch M., Kowalski T.Z., Mindur B. (2006). Change in detector properties caused by electronegative impurities. Nuclear Physics B (Proc. Suppl.), vol. 150, s. 398–401 ; [6] Deptuch M., Kowalski T.Z., Mindur B. (2005). Selected problems in aging effects with gas proportional counters. Nuclear Physics B (Proc. Suppl.), vol. 150, s. 394–397 ; [7] Abat E., [et.al.] (2008). ATLAS TRT Collaboration. The ATLAS Transition Radiation Tracker (TRT) proportional drift tube: design and performance. Journal of Instrumentation, 3 poz. P02013 ; [8] Abat E., [et.al.] (2008). ATLAS TRT Collaboration. The ATLAS TRT Barrel Detector. Journal of Instrumentation, 3 poz. P02014 ; [9] Abat E., [et.al.] (2008), ATLAS TRT Collaboration. The ATLAS TRT end-cap detectors. Journal of Instrumentation, 3 poz. P10003 ; [10] Abat E., [et.al.] (2010). Part of ATLAS Collaboration. Combined performance studies for electrons at the 2004 ATLAS combined test-beam. Journal of Instrumentation, 5 poz. P11006 ; [11] Wiącek P., [et al.] (2012). Design and performance of a system for two-dimensional readout of gas electron multiplier detectors for proton range radiography. Nukleonika, nr 57(4), s. 413–519 ; [12] Zielińska A., [et al.] (2013). X-ray fluorescence imaging system for fast mapping of pigment distributions in cultural heritage paintings. Journal of Instrumentation, 8 poz. P10011 ; [13] Mindur B., [et al.] (2013). A compact system for two-dimensional readout of Gas Electron Multiplier detectors. Journal of Instrumentation, 8 poz. T01005 ; [14] Mindur B., [et al.] (2014). Performance of a Micro-Strip Gas Chamber for event wise, high rate thermal neutron detection with accurate 2D position determination. Journal of Instrumentation, 9 poz. P12004 ; [15] Mindur B., [et.al.] (2016). ATLAS TRT Collaboration. Gas gain stabilisation in the ATLAS TRT detector. Journal of Instrumentation, 11 poz. P04027 ; [16] Mindur B. (2016). ATLAS Transition Radiation Tracker (TRT): Straw Tubes for Tracking and Particle Identification at the Large Hadron Collider. Nuclear Instruments and Methods in Physics Research A, (article in press) ; [17] Mindur B. (2016). MicroPattern Gaseous Detectors – new developments and applications. Acta Physica Polonica B, nr 47(2), s. 287–292 ; [18] Dąbrowski W., Mindur B., Sikorska A. (2016). Optimisation of the X-ray fluorescence imaging system for mapping of pigments in historical paintings. Acta Physica Polonica B, nr 47(2), s. 335–340.