首页--数理科学和化学论文--原子核物理学、高能物理学论文--高能物理学论文--粒子类型论文--介子论文

LHC/ALICE实验向前区重夸克冷核效应的研究

摘要第6-11页
Abstract第11页
1 Introduction第39-79页
    1.1 Quantum ChromoDynamics and Quark Gluon Plasma第39-44页
        1.1.1 The Standard Model and QCD第39-42页
        1.1.2 Lattice QCD calculations第42-44页
    1.2 Studying the QGP with heavy-ion collisions第44-61页
        1.2.1 Spacc-time evolution of heavy-ion colliding system第44-46页
        1.2.2 Signatures of the QGP from SPS to LHC第46-56页
        1.2.3 Cold and Hot Nuclear Matter Effects第56-61页
    1.3 Heavy-Flavours as probes of the QGP第61-79页
        1.3.1 Heavy-Flavour production in heavy-ion collisions第61-74页
        1.3.2 Studying heavy-flavours from their decay muons第74-79页
2 The ALICE Experiment第79-105页
    2.1 ALICE Setup第79-81页
    2.2 Global Detectors第81-84页
    2.3 Central Barrel Detectors第84-85页
    2.4 The Forward muon spectrometer第85-96页
        2.4.1 The absorbers第89-90页
        2.4.2 Dipole Magnet第90页
        2.4.3 Tracking Stations第90-94页
        2.4.4 Trigger Stations第94-96页
    2.5 Future Upgrade of the Muon Spectrometer第96-100页
        2.5.1 Muon Tracking Upgrade第97页
        2.5.2 Muon Trigger Upgrade第97-98页
        2.5.3 Muon Forward Tracker(MFT)第98-100页
    2.6 ALICE Offine Framework第100-105页
3 Data samples, Muon Selection Criteria and Acceptance×Effi-ciency Correction第105-151页
    3.1 Data Samples第106-123页
        3.1.1 Event Selection第106-108页
        3.1.2 Pile-up Effect第108-111页
        3.1.3 Normalization of Muon Triggers to Minimum Bias第111-123页
    3.2 Muon Track Selection第123-132页
        3.2.1 Track Selection第125-129页
        3.2.2 Detailed study of the p×DCA cut第129-132页
    3.3 Event Activity Classification第132-140页
        3.3.1 The Strategies第132-134页
        3.3.2 Multiplicity in p-Pb collisions第134-136页
        3.3.3 Event Activity Dependence in p-Pb Muon Triggered Events第136-140页
    3.4 Acceptance×Efficiency Correction第140-151页
        3.4.1 Aspects of correction efficiency第140-141页
        3.4.2 Strategy and Results第141-145页
        3.4.3 Systematic Uncertainty on the Efficiency第145-151页
4 Subtraction of the background contribution of muons from charged pion and kaon decays第151-215页
    4.1 Experience Gained from Previous Analyses第151-156页
        4.1.1 Muon Sources第151-154页
        4.1.2 Background Estimation Strategies第154-156页
    4.2 Background Estimation in multiplicity integrated p-Pb Collisions Based on a Data-Driven Method第156-187页
        4.2.1 Summary of the Strategy第156-160页
        4.2.2 Input Charged Hadron Distributions第160-165页
        4.2.3 Rapidity Extrapolation第165-175页
        4.2.4 Conversion at Muon Level and Systematic Uncertainty第175-182页
        4.2.5 Cross-Checks and Discussion第182-187页
    4.3 Background within Individual Event Activity Classes in p-Pb Collisions第187-215页
        4.3.1 Challenges and Solutions第187-188页
        4.3.2 Charged Hadron Spectra with Different Estimators第188-191页
        4.3.3 Event Activity Determination第191-198页
        4.3.4 Deviation between Data and Monte-Carlo第198-203页
        4.3.5 Rapidity Extrapolation第203-207页
        4.3.6 Estimated Background and Systematic Uncertainty第207-209页
        4.3.7 Discussion第209-215页
5 The pp Reference第215-241页
    5.1 pQCD-based Energy Sealing Procedure第215-230页
        5.1.1 The Strategy第216-217页
        5.1.2 Uncertainty Determination in Model第217-222页
        5.1.3 Strategy Validation for the Rapidity Shift第222-226页
        5.1.4 Energy Scaling Factor第226-230页
    5.2 The pp Rcference Estimated at (?)=5.02 TeV第230-234页
        5.2.1 Results Based on the Measurement at (?)=7 TeV第231-232页
        5.2.2 Extrapolation to Higher Transverse Momentum第232-234页
    5.3 Discussion第234-241页
        5.3.1 Combination of the Results From Different Energies第234-237页
        5.3.2 Alternative Strategy for the Reference at High p_T第237-241页
6 Muons from Heavy-Flavour Hadron Decays in p-Pb Collisions at (?)=5.02 TeV第241-271页
    6.1 Summary of the Analysis Strategy第241-243页
    6.2 Summary of the Systematic Uncertainty第243-255页
        6.2.1 Sources of Systematic Uncertainty第243-246页
        6.2.2 Error Propagation第246-255页
    6.3 Production Cross Section第255-257页
    6.4 Nuclear Modification Factor第257-266页
        6.4.1 Measurements in Multiplicity Integrated Collisions第257页
        6.4.2 Event Activity Dependence第257-263页
        6.4.3 Discussion第263-266页
    6.5 Forward-To-Backward Ratio第266-271页
        6.5.1 Measurements in Multiplicity Integrated Collisions第266-268页
        6.5.2 Event Activity Dependence第268-271页
Conclusions第271-273页
Bibliography第273-299页
Appendix第299-311页
Publication List第311-313页
Presentation List第313-315页
Acknowledgements第315-316页
附件第316页

论文共316页,点击 下载论文
上一篇:大学英语教学有效性问题研究
下一篇:小学人本化教育的实践研究--基于荆州市A小学的个案研究