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硅漂移SDD探测器低能区的效率刻度

摘要第6-7页
Abstract第7页
List of acronyms第11-12页
CHAPTER 1:Introduction第12-20页
    1.1 Background and significance of research on the topic第12-14页
    1.2 Research motivation第14-15页
    1.3 Literature review第15-18页
    1.4 Research objectives and methodology第18-20页
        1.4.1 The objectives第18页
        1.4.2 The methodology第18-20页
CHAPTER 2: Interaction between electrons and matter第20-23页
    2.1 Ionization and excitation caused by electrons第20-21页
    2.2 Bremsstrahlung of electron impact target materials第21页
    2.3 Backscattering of incident electron第21-22页
    2.4 Elastic collision between an incident electron and the orbital electrons of targetatoms第22-23页
CHAPTER 3: Silicon drift detector第23-27页
    3.1 Introduction第23页
    3.2 The working principle of the silicon drift detector第23-25页
    3.3 Advantages and characteristics of the silicon drift detector第25页
    3.4 Detection efficiency of the silicon drift detector第25-26页
    3.5 The detection mechanism of the x-ray第26-27页
CHAPTER 4: Monte Carlo method and PENELOPE program第27-36页
    4.1 Monte Carlo method第27-29页
        4.1.1 Introduction to Monte Carlo method第27-29页
        4.1.2 Characteristics of Monte Carlo method第29页
    4.2 PENELOPE program第29-36页
        4.2.1 Introduction to PENELOPE program第29-36页
CHAPTER 5: Relative efficiency calibration method第36-47页
    5.1 Determination of the experimental bremsstrahlung spectrum and smoothing第36-41页
        5.1.1 Experimental principle第36-37页
        5.1.2 Experimental setup and equipment第37页
        5.1.3 Experiental process and results第37-38页
        5.1.4 Experimental bremsstrahlung spectrum smoothing第38-41页
    5.2 Simulation of the bremsstrahlung spectrum and the convolution第41-43页
        5.2.1 Bremsstrahlung spectrum simulation第41页
        5.2.2 Simulation of the bremsstrahlung spectrum convolution第41-43页
    5.3 Relative detection efficiency curve acquisition第43-44页
    5.4 Absolute detection efficiency curve第44-47页
CHAPTER 6: The theoretical model method第47-51页
    6.1 The theoretical detection efficiency calculation第47-50页
    6.2 Absolute theoretical detection efficiency determination第50-51页
CHAPTER 7: Results and discussions第51-53页
    7.1 Results comparison第51-52页
    7.2 Error analysis第52-53页
CHAPTER 8:Conclusion第53-54页
References第54-57页
Acknowledgements第57-58页
Publications during masters第58页

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