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Standard Model Measurements with the ATLAS Detector: Monte Carlo Simulations of Tile Calorimeter and Measurement Z ? Cross Section

Standard Model Measurements with the ATLAS Detector: Monte Carlo Simulations of Tile Calorimeter and Measurement Z ? Cross Section in Franklin, TN

Current price: $109.99
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Standard Model Measurements with the ATLAS Detector: Monte Carlo Simulations of Tile Calorimeter and Measurement Z ? Cross Section

Barnes and Noble

Standard Model Measurements with the ATLAS Detector: Monte Carlo Simulations of Tile Calorimeter and Measurement Z ? Cross Section in Franklin, TN

Current price: $109.99
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Size: Hardcover

This thesis deals with two main procedures performed with the ATLAS detector at the Large Hadron Collider (LHC). The noise description in the hadronic calorimeter TileCal represents a very valuable technical job. The second part presents a fruitful physics analysis - the cross section measurement of the process p+p → Z
0
→ τ + τ.
The Monte Carlo simulations of the TileCal are described in the first part of the thesis, including a detailed treatment of the electronic noise and multiple interactions (so-called pile-up). An accurate description of both is crucial for the reconstruction of e.g. jets or hadronic tau-jets.
The second part reports a Standard Model measurement of the Z
→ τ + τ process with the emphasis on the final state with an electron and a hadronically decaying tau-lepton. The Z
→ τ + τ channel forms the dominant background in the search for Higgs bosons decaying into tau lepton pairs, and thus the good understanding achieved here can facilitate more sensitive Higgs detection.
This thesis deals with two main procedures performed with the ATLAS detector at the Large Hadron Collider (LHC). The noise description in the hadronic calorimeter TileCal represents a very valuable technical job. The second part presents a fruitful physics analysis - the cross section measurement of the process p+p → Z
0
→ τ + τ.
The Monte Carlo simulations of the TileCal are described in the first part of the thesis, including a detailed treatment of the electronic noise and multiple interactions (so-called pile-up). An accurate description of both is crucial for the reconstruction of e.g. jets or hadronic tau-jets.
The second part reports a Standard Model measurement of the Z
→ τ + τ process with the emphasis on the final state with an electron and a hadronically decaying tau-lepton. The Z
→ τ + τ channel forms the dominant background in the search for Higgs bosons decaying into tau lepton pairs, and thus the good understanding achieved here can facilitate more sensitive Higgs detection.

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