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Course, academic year 2023/2024
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Semiconductor Detectors in Nuclear and Subnuclear Physics - NJSF101
Title: Polovodičové detektory v jaderné a subjaderné fyzice.
Guaranteed by: Institute of Particle and Nuclear Physics (32-UCJF)
Faculty: Faculty of Mathematics and Physics
Actual: from 2022
Semester: winter
E-Credits: 3
Hours per week, examination: winter s.:2/0, Ex [HT]
Capacity: unlimited
Min. number of students: unlimited
4EU+: no
Virtual mobility / capacity: no
State of the course: taught
Language: Czech, English
Teaching methods: full-time
Teaching methods: full-time
Additional information: http://www-ucjf.troja.mff.cuni.cz/dolezal/teach/semicon/
Guarantor: prof. RNDr. Zdeněk Doležal, Dr.
Annotation -
Last update: T_UCJF (27.05.2002)
Semiconductors, semiconducting structures, interaction of radiation in semiconductors, spectroscopic detectors, position sensitive detectors (strip, pixel, ...). Electronics for semiconductor detectors, radiation hardness. Applications in medicine and other fields. Data manipulation (analysis of spectra, search for peaks, tracking of particles).
Course completion requirements - Czech
Last update: prof. RNDr. Zdeněk Doležal, Dr. (07.06.2019)

Podmínkou zakončení předmětu je složení zkoušky.

Literature -
Last update: T_UCJF (19.03.2015)

G. Lutz: Semiconductor Radiation Detectors, Springer Berlin, 1999

F. Hartmann: Evolution of Silicon Sensor Technology in Particle Physics, Springer 2008

S. M. Sze, Physics of Semiconductor Devices, Wiley, NY 1981

C. Kittel, .Úvod do fyziky pevných látek, ACADEMIA Praha 1985

Studijní texty: http://www-ucjf.troja.mff.cuni.cz/~dolezal/teach/semicon/

Requirements to the exam - Czech
Last update: prof. RNDr. Zdeněk Doležal, Dr. (07.10.2017)

Zkouška má ústní formu. Uchazeč dostane po jedné otázce z každého z okruhů:

  • Interakce záření s hmotou, vlastnosti polovodičů
  • Typy a třídy detektorů
  • Příklad

Požadavky odpovídají sylabu v rozsahu prezentovaném na přednášce.

Syllabus -
Last update: T_UCJF (23.05.2003)
  • Basic principles
  • Semiconductor structures: p-n junction
  • Interaction of radiation in semiconductors, detection characteristics
  • Spectroscopical detectors (charged particles, gamma)
  • Position sensitive detectors (strips, pixels, drift, CCD)
  • Electronics for semiconductor detectors
  • Radiation hardness
  • Applications: medical imaging, image reconstruction
  • Data analysis (spectra evaluation, peak search, track reconstruction), practical examples

 
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