2009
DOI: 10.1109/tns.2008.2003254
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Demonstration of a Dual-Range Photon Detector With SDD and ${\hbox {LaBr}}_{3}({\hbox {Ce}}^{3+})$ Scintillator

Abstract: A novel concept for improving gamma ray spectroscopy in compact instruments is presented. The dual-range photon detector (DRPD) consists of a silicon drift detector (SDD) which is optically coupled with a LaBr 3 (Ce 3+ ) crystal. In contrast to similar configurations investigated so far the SDD points to the radiation source. Pulse shape discrimination allows separating the distinct detection mechanisms which correspond to gamma absorption in the SDD or in the scintillator, respectively. This arrangement combi… Show more

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Cited by 10 publications
(7 citation statements)
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“…All measurements were performed at room temperature (23-25 C) with a 6 mm in diameter and 6 mm high LaBr crystal, no 3416, tested earlier in [12]. Details of the crystal assembling on the SDD are given in [16].…”
Section: Methodsmentioning
confidence: 99%
“…All measurements were performed at room temperature (23-25 C) with a 6 mm in diameter and 6 mm high LaBr crystal, no 3416, tested earlier in [12]. Details of the crystal assembling on the SDD are given in [16].…”
Section: Methodsmentioning
confidence: 99%
“…Bipolar shaping was used. More details on the signal shaping, ballistic deficit and temperature effects can be found in Ret: [4]. The silicon drift detectors with an active area of 30 mm 2 were purchased from PNSensor.…”
Section: Characteristics Of the Experimental Detection Systemsmentioning
confidence: 99%
“…the pulse height per keY of absorbed gamma energy depends on the detection mode. The factor distinguishing the pulse heights of signals corresponding to the same gamma energy but different detection mode is approximately 7Re£ [4] with the actual detector configuration. The two spectra represent the two complementary detection modes provided by the compact detector configuration, which is operated at room temperature and coupled to a single electronics channel.…”
Section: - --------mentioning
confidence: 99%
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“…This feature allows reaching a low electronics noise, making it an ideal device for X-ray spectroscopy applications [2], but also a competitive device for scintillator readout representing a valid alternative to conventional photomultiplier tube (PMT) [3][4][5][6][7]. SDDs show high quantum efficiency and a low intrinsic electronics noise.…”
Section: Introductionmentioning
confidence: 99%