High-Z Materials for X-ray Detection [electronic resource] : Material Properties and Characterization Techniques / edited by Leonardo Abbene, Krzysztof (Kris) Iniewski.

Colaborador(es): Abbene, Leonardo [editor.] | Iniewski, Krzysztof (Kris) [editor.] | SpringerLink (Online service)Tipo de material: TextoTextoEditor: Cham : Springer International Publishing : Imprint: Springer, 2023Edición: 1st ed. 2023Descripción: IX, 246 p. 116 illus., 92 illus. in color. online resourceTipo de contenido: text Tipo de medio: computer Tipo de portador: online resourceISBN: 9783031209550Tema(s): Electronic circuits | Telecommunication | Materials | Electronic Circuits and Systems | Microwaves, RF Engineering and Optical Communications | Materials for DevicesFormatos físicos adicionales: Printed edition:: Sin título; Printed edition:: Sin título; Printed edition:: Sin títuloClasificación CDD: 621.3815 Clasificación LoC:TK7867-7867.5Recursos en línea: Libro electrónicoTexto
Contenidos:
Chapter 1 High-Z Materials for X-ray and Gamma-ray Detection in Medical Imaging -- Chapter 2 Large Area Thin Film CdTe as the Next Generation X-ray Detector for Medical Imaging Applications -- Chapter 3 Investigation of Structural Defects in (Cd,Zn)Te Crystals Grown by the Traveling Heater Method -- Chapter 4 Solution Growth of CdZnTe Crystals for X-Ray Detector -- Chapter 5 3-Dimensional Mapping of Carrier Lifetime and Mobility -- Chapter 6 Investigation on the polarization effect and depolarization technique of CZT detector under high flux rate X/γ-ray irradiation -- Chapter 7 Research on the performance of CZT detector in alpha particle detection -- Chapter 8 CdZnTeSe: Recent advances for radiation detector applications -- Chapter 9 Investigation of charge transport properties and the role of point defects in CdZnTeSe room temperature radiation detectors -- Chapter 10 Charge sharing and cross-talk effects in high-Z and wide-bandgap compound semiconductor pixel detectors -- Chapter 11 Effect of electron irradiation on spectroscopic properties of Schottky-barrier CdTe semiconductor detectors -- Chapter 12. A Path to produce High-Performance CdZnTe crystals.
En: Springer Nature eBookResumen: This book will provide readers with a good overview of some of most recent advances in the field of High-Z materials. There will be a good mixture of general chapters in both technology and applications in opto-electronics, X-ray detection and emerging optoelectronics applications. The book will have an in-depth review of the research topics from world-leading specialists in the field. Covers a broad range of topics, including novel material properties and applications of high-Z materials; Includes in-depth analysis on how to develop and use High-Z materials; Discusses analysis of applications in opto-electronics and for X-ray detection.
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Chapter 1 High-Z Materials for X-ray and Gamma-ray Detection in Medical Imaging -- Chapter 2 Large Area Thin Film CdTe as the Next Generation X-ray Detector for Medical Imaging Applications -- Chapter 3 Investigation of Structural Defects in (Cd,Zn)Te Crystals Grown by the Traveling Heater Method -- Chapter 4 Solution Growth of CdZnTe Crystals for X-Ray Detector -- Chapter 5 3-Dimensional Mapping of Carrier Lifetime and Mobility -- Chapter 6 Investigation on the polarization effect and depolarization technique of CZT detector under high flux rate X/γ-ray irradiation -- Chapter 7 Research on the performance of CZT detector in alpha particle detection -- Chapter 8 CdZnTeSe: Recent advances for radiation detector applications -- Chapter 9 Investigation of charge transport properties and the role of point defects in CdZnTeSe room temperature radiation detectors -- Chapter 10 Charge sharing and cross-talk effects in high-Z and wide-bandgap compound semiconductor pixel detectors -- Chapter 11 Effect of electron irradiation on spectroscopic properties of Schottky-barrier CdTe semiconductor detectors -- Chapter 12. A Path to produce High-Performance CdZnTe crystals.

This book will provide readers with a good overview of some of most recent advances in the field of High-Z materials. There will be a good mixture of general chapters in both technology and applications in opto-electronics, X-ray detection and emerging optoelectronics applications. The book will have an in-depth review of the research topics from world-leading specialists in the field. Covers a broad range of topics, including novel material properties and applications of high-Z materials; Includes in-depth analysis on how to develop and use High-Z materials; Discusses analysis of applications in opto-electronics and for X-ray detection.

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