LDR | | 00000nmm u2200205 4500 |
001 | | 000000330814 |
005 | | 20241105105513 |
008 | | 181129s2018 ||| | | | eng d |
020 | |
▼a 9780438125971 |
035 | |
▼a (MiAaPQ)AAI10902991 |
035 | |
▼a (MiAaPQ)umichrackham:001138 |
040 | |
▼a MiAaPQ
▼c MiAaPQ
▼d 248032 |
049 | 1 |
▼f DP |
082 | 0 |
▼a 539 |
100 | 1 |
▼a O'Neal, Sean P. |
245 | 10 |
▼a Advancements in TlBr for Gamma-Ray Detection and Imaging. |
260 | |
▼a [S.l.] :
▼b University of Michigan.,
▼c 2018 |
260 | 1 |
▼a Ann Arbor :
▼b ProQuest Dissertations & Theses,
▼c 2018 |
300 | |
▼a 141 p. |
500 | |
▼a Source: Dissertation Abstracts International, Volume: 79-12(E), Section: B. |
500 | |
▼a Adviser: Zhong He. |
502 | 1 |
▼a Thesis (Ph.D.)--University of Michigan, 2018. |
520 | |
▼a Thallium bromide is an attractive material for room-temperature gamma-ray spectroscopy and imaging because of its high atomic number (Tl: 81, Br: 35), high density (7.56 g/cm3), and a wide bandgap (2.68 eV). TlBr detectors can achieve better tha |
520 | |
▼a Important material characterization is also presented including the use of detailed waveform analysis showing that some TlBr detectors have charge multiplication by drifting holes and the measurement of the ionization energy of TlBr. Which when |
520 | |
▼a The performance of large volume (12 x 12 x 5 mm 3) TlBr detectors is presented |
590 | |
▼a School code: 0127. |
650 | 4 |
▼a Nuclear physics and radiation. |
690 | |
▼a 0756 |
710 | 20 |
▼a University of Michigan.
▼b Nuclear Engineering & Radiological Sciences. |
773 | 0 |
▼t Dissertation Abstracts International
▼g 79-12B(E). |
773 | |
▼t Dissertation Abstract International |
790 | |
▼a 0127 |
791 | |
▼a Ph.D. |
792 | |
▼a 2018 |
793 | |
▼a English |
856 | 40 |
▼u http://www.riss.kr/pdu/ddodLink.do?id=T15000499
▼n KERIS |
980 | |
▼a 201812
▼f 2019 |
990 | |
▼a 관리자
▼b 관리자 |