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000416980 1001_ $$0P:(DE-H253)PIP1008805$$aCaiazza, Stefano$$b0$$eCorresponding author$$gmale
000416980 245__ $$aThe GridGEM module for the ILD TPC & A new algorithm for kinematic edge determination$$f2009-11-01 - 2018-03-31
000416980 260__ $$aHamburg$$bVerlag Deutsches Elektronen-Synchrotron$$c2018
000416980 300__ $$a283
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000416980 502__ $$aDissertation, Universität Hamburg, 2018$$bDissertation$$cUniversität Hamburg$$d2018$$o2018-03-28
000416980 520__ $$aThe ILC is a planned linear collider, designed to provide polarized electrons and positronsat energies higher than 250 GeV, possibly up to 1TeV, never before reached at a leptoncollider. At the interaction point there will be two detectors, which will perform highprecision measurement at those energies. To achieve those performances, many of thecomponents have to be developed beyond the current state of the art. Moreover a preliminarysimulation and analysis work is required to understand what type of measurementswill those experiments be able to perform and which precision can they achieve.In this thesis we will be mostly concerned with the ILD experiment, which features alarge volume TPC used as its main tracker. The first part of this thesis focusses on thedesign, development and test of the first prototype of a new GEM-based readout module forthat TPC, built around an innovative ceramic support system which will allow a reductionof the dead space in the sensitive area of a factor of 3, as compared to traditional solutions.In the second part of this work we will focus on the development of a computationaltechnique to measure the position of edge-like kinematic end-points in physical distributions.Therefore this work will focus in particular on the characterisation of the algorithmto define a procedure to reliably evaluate the statistical and systematic errors associatedwith the measurement. At the ILD such a technique would be particularly useful to measurethe end-point in the kinematic distributions of the decay products of new physicalstates like those hypothesized by Supersymmetry. To evaluate the performance of thealgorithm and of the experiment in that scenario we applied that new technique to theprocess e−e+ ! ˜eR¯˜eR ! e±e ˜01˜01and measured the position of the kinematic edge inthe momentum distribution of the final state leptons obtaining a factor of 2 improvementon the accuracy in the measurement of the masses of the s-electron and Neutralino, ascompared to the currently published estimates.iii
000416980 536__ $$0G:(DE-HGF)POF3-632$$a632 - Detector technology and systems (POF3-632)$$cPOF3-632$$fPOF III$$x0
000416980 536__ $$0G:(GEPRIS)28895157$$aSFB 676 B01 - Optimierung des ILC setups: Physikprogramm, Betriebsszenarien und Designentscheidungen (B01) (28895157)$$c28895157$$x1
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000416980 650_7 $$2INSPIRE$$atime projection chamber
000416980 650_7 $$2INSPIRE$$aILD detector
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000416980 650_7 $$2INSPIRE$$agas electron multiplier
000416980 650_7 $$2INSPIRE$$aelectronics: readout
000416980 650_7 $$2INSPIRE$$adetector: design
000416980 650_7 $$2INSPIRE$$asupersymmetry
000416980 650_7 $$2INSPIRE$$adata analysis method
000416980 650_7 $$2INSPIRE$$alepton: final state
000416980 650_7 $$2INSPIRE$$amomentum spectrum
000416980 650_7 $$2INSPIRE$$astatistical analysis
000416980 693__ $$0EXP:(DE-H253)ILC(machine)-20150101$$1EXP:(DE-H253)ILC-20150101$$5EXP:(DE-H253)ILC(machine)-20150101$$aILC$$eFacility (machine) ILC$$x0
000416980 7001_ $$0P:(DE-H253)PIP1003157$$aBehnke, Ties$$b1$$eThesis advisor
000416980 7001_ $$0P:(DE-H253)PIP1005630$$aList, Jenny$$b2$$eThesis advisor
000416980 7001_ $$0P:(DE-H253)PIP1002535$$aGarutti, Erika$$b3$$eThesis advisor
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