Development of Large-area Lithium-drifted Silicon Detectors for the GAPS Experiment

2018 IEEE Nuclear Science Symposium and Medical Imaging Conference Proceedings (NSS/MIC)(2018)

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摘要
We have developed large-area lithium-drifted silicon (Si(Li)) detectors to meet the unique requirements of the General Antiparticle Spectrometer (GAPS) experiment. GAPS is an Antarctic balloon-borne mission scheduled for the first flight in late 2020. The GAPS experiment aims to survey low-energy cosmic-ray antinuclei, particularly antideuterons, which are recognized as essentially background-free signals from dark matter annihilation or decay. The GAPS Si(Li) detector design is a thickness of 2.5 mm, diameter of 10 cm and 8 readout strips. The energy resolution of <;4 keV (FWHM) for 20 to 100 keV X-rays at temperature of -35 to -45 C, far above the liquid nitrogen temperatures frequently used to achieve fine energy resolution, is required. We developed a high-quality Si crystal and Li-evaporation, diffusion and drift methods to form a uniform Li-drifted layer. Guard ring structure and optimal etching of the surface are confirmed to suppress the leakage current, which is a main source of noise. We found a thin un-drifted layer retained on the p-side effectively suppresses the leakage current. By these developments, we succeeded in developing the GAPS Si(Li) detector. As the ultimate GAPS instrument will require >1000 10-cm diameter Si(Li) detectors to achieve high sensitivity to rare antideuteron events, high-yield production is also a key factor for the success of the GAPS mission.
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leakage current,ultimate GAPS instrument,GAPS mission,large-area lithium-drifted silicon detectors,GAPS experiment,General Antiparticle Spectrometer experiment,Antarctic balloon-borne mission,low-energy cosmic-ray antinuclei,essentially background-free signals,dark matter annihilation,liquid nitrogen temperatures,fine energy resolution,high-quality Si crystal,diffusion,drift methods,uniform Li-drifted layer,optimal etching,readout strips,X-rays,electron volt energy 20.0 keV to 100.0 keV,electron volt energy 4.0 keV,Si,Li
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