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Inorganic Scintillators for Detector Systems: Physical Principles and Crystal Engineering 2017 Edition
Contributor(s): Lecoq, Paul (Author), Gektin, Alexander (Author), Korzhik, Mikhail (Author)
ISBN: 3319455214     ISBN-13: 9783319455211
Publisher: Springer
OUR PRICE:   $151.99  
Product Type: Hardcover - Other Formats
Published: December 2016
Qty:
Temporarily out of stock - Will ship within 2 to 5 weeks
Additional Information
BISAC Categories:
- Science | Physics - Nuclear
- Science | Weights & Measures
- Technology & Engineering | Materials Science - General
Dewey: 530.8
Series: Particle Acceleration and Detection
Physical Information: 1.07" H x 6.33" W x 9.56" (2.05 lbs) 408 pages
 
Descriptions, Reviews, Etc.
Publisher Description:

This second edition features new chapters highlighting advances in our understanding of the behavior and properties of scintillators, and the discovery of new families of materials with light yield and excellent energy resolution very close to the theoretical limit. The book focuses on the discovery of next-generation scintillation materials and on a deeper understanding of fundamental processes.

Such novel materials with high light yield as well as significant advances in crystal engineering offer exciting new perspectives. Most promising is the application of scintillators for precise time tagging of events, at the level of 100 ps or higher, heralding a new era in medical applications and particle physics.

Since the discovery of the Higgs Boson with a clear signature in the lead tungstate scintillating blocks of the CMS Electromagnetic Calorimeter detector, the current trend in particle physics is toward very high luminosity colliders, in which timing performance will ultimately be essential to mitigating pile-up problems. New and extremely fast light production mechanisms based on Hot-Intraband-Luminescence as well as quantum confinement are exploited for this purpose.

Breakthroughs such as crystal engineering by means of co-doping procedures and selection of cations with small nuclear fragmentation cross-sections will also pave the way for the development of more advanced and radiation-hard materials. Similar innovations are expected in medical imaging, nuclear physics ecology, homeland security, space instrumentation and industrial applications. This second edition also reviews modern trends in our understanding and the engineering of scintillation materials. Readers will find new and updated references and information, as well as new concepts and inspirations to implement in their own research and engineering endeavors.