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Measurement of the response of a $$^6$$Li-glass detector to gamma rays by a coincidence method

$$^{6}$$Liガラスシンチレータのガンマ線応答特性の同時計測による測定

伊藤 史哲*; Lee, J. ; 弘中 浩太  ; 高橋 時音; 鈴木 敏*; 持丸 貴則*; 堀 順一*; 寺田 和司*; 小泉 光生 

Ito, Fumiaki*; Lee, J.; Hironaka, Kota; Takahashi, Tone; Suzuki, Satoshi*; Mochimaru, Takanori*; Hori, Junichi*; Terada, Kazushi*; Koizumi, Mitsuo

The response of a gamma-ray spectrometer is generally determined by analyzing full-energy peaks. However, full-energy peaks cannot be measured easily in the case of scintillation detectors that consist of light elements, such as glass scintillators. Only a strong Compton plateau appears in the spectrum of such detectors. Therefore, Compton edgers were used to evaluate the response of these detectors. The response of a low-resolution $$^6$$Li-glass detector to gamma rays was measured for the first time by a coincidence method with a high-resolution LaBr$$_3$$:Ce detector using cascade gamma rays (2.75 and 1.37 MeV) from a $$^{24}$$Na source. Coincidence gates were applied at the peaks of the spectrum of the LaBr$$_3$$:Ce detector at the 0.51 MeV annihilation peak, and the sum peaks of a gamma ray and a backscattered gamma ray. By analyzing the gated spectra of the $$^6$$Li-glass detector, the energy-dependent detector response (i.e., the output strength and its dispersion) was determined.

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