
This book describes the fundamentals of particle detectors as well as their applications. Detector development is an important part of nuclear, particle and astroparticle physics, and through its applications in radiation imaging, it paves the way for advancements in the biomedical and materials sciences. Knowledge in detector physics is one of the required skills of an experimental physicist in these fields. The breadth of knowledge required for detector development comprises many areas of physics and technology, starting from interactions of particles with matter, gas- and solid-state physics, over charge transport and signal development, to elements of microelectronics. The book's aim is to describe the fundamentals of detectors and their different variants and implementations as clearly as possible and as deeply as needed for a thorough understanding. While this comprehensive opus contains all the materials taught in experimental particle physics lectures or modules addressing detector physics at the Master's level, it also goes well beyond these basic requirements. This is an essential text for students who want to deepen their knowledge in this field. It is also a highly useful guide for lecturers and scientists looking for a starting point for detector development work.
This text investigates the fundamental physical principles governing particle detectors and their diverse practical applications across scientific and medical fields. Authors Hermann Kolanoski and Norbert Wermes, both established experts in experimental physics, synthesize complex concepts ranging from particle-matter interactions to microelectronics. The book provides a structured framework designed to bridge the gap between theoretical physics and the technical implementation of detection systems.
What You Will Find
Scope Limits
Experts and academics recognize this work as a comprehensive resource for graduate-level experimental physics curricula. Readers frequently note the technical density of the prose, which serves as a rigorous reference for both students and practicing scientists in the field.
Page Count:
944
Publication Date:
2020-01-01
Publisher:
OUP Oxford
ISBN-10:
0191899232
ISBN-13:
9780191899232
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