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Çonka Nurdan, Tuba: High resolution measurements with silicon drift detectors for Compton camera applications. 2004
Inhalt
Contents
1. Introduction
1.1 Literature Review of Compton Camera Systems
1.2 Objectives of this Work
1.3 Overview of Dissertation
2. Theoretical Considerations for the Compton Camera System Design
2.1 Principles of Compton Camera Imaging
2.2 Interaction of Photons
2.3 Interactions of Electrons
3. Impact of the Detector Parameters on the Compton Camera Performance
3.1 Doppler Broadening
3.2 Energy Resolution of the Electron Detector
3.3 Geometric Factors in Angular Uncertainty
3.4 Overall Angular Uncertainty
4. Description and Characterization of the Compton Camera System
4.1 Choice of the Radioisotope for Compton Camera Imaging
4.2 Scatter Detector: Silicon Drift Detector
4.3 Absorption Detector: Anger Camera
4.4 The Compton Camera Setup
5. Front-End Electronics and Data Acquisition System
5.1 Front-End Electronics of the Silicon Drift Detector
5.2 Data Acquisition System
5.3 Spectroscopic Measurements with a Single Cell SDD
6. Measurements and Results
6.1 Spectroscopic Performance of the Scatter Detector
6.2 Measurements with the Absorption Detector
6.3 First Coincidence Signals
6.4 Coincidences with a Finely Collimated Beam
6.5 High-Statistics Coincidence Measurements
7. Conclusions and Future Work
7.1 Conclusions
7.2 Future Work
A. Appendices for Chapter 2
B. Appendices for Chapter 3
C. Appendices for Chapter 4
D. Appendices for Chapter 5
Bibliography