Silica aerogel radiator for use in the A-RICH system utilized in the Belle II experiment

This paper presents recent progress in the development and mass production of large-area hydrophobic silica aerogels for use as radiators in the aerogel-based ring-imaging Cherenkov (A-RICH) counter, which will be installed in the forward end cap of the Belle II detector. The proximity-focusing A-RI...

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Veröffentlicht in:Nuclear instruments & methods in physics research. Section A, Accelerators, spectrometers, detectors and associated equipment Accelerators, spectrometers, detectors and associated equipment, 2014-12, Vol.766, p.212-216
Hauptverfasser: Tabata, Makoto, Adachi, Ichiro, Hamada, Nao, Hara, Koji, Iijima, Toru, Iwata, Shuichi, Kakuno, Hidekazu, Kawai, Hideyuki, Korpar, Samo, Križan, Peter, Kumita, Tetsuro, Nishida, Shohei, Ogawa, Satoru, Pestotnik, Rok, Šantelj, Luka, Seljak, Andrej, Sumiyoshi, Takayuki, Tahirović, Elvedin, Yoshida, Keisuke, Yusa, Yosuke
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Sprache:eng
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Zusammenfassung:This paper presents recent progress in the development and mass production of large-area hydrophobic silica aerogels for use as radiators in the aerogel-based ring-imaging Cherenkov (A-RICH) counter, which will be installed in the forward end cap of the Belle II detector. The proximity-focusing A-RICH system is especially designed to identify charged kaons and pions. The refractive index of the installed aerogel Cherenkov radiators is approximately 1.05, and we aim for a separation capability exceeding 4 sigma at momenta up to 4 GeV/c. Large-area aerogel tiles (over 18182 cm super(3)) were first fabricated in test productions by pin drying in addition to conventional methods. We proposed to fill the large end-cap region (area 3.5 m super(2)) with 124 water-jet-trimmed fan-shaped dual-layer-focusing aerogel combinations of different refractive indices (1.045 and 1.055). Guided by the test production results, we decided to manufacture aerogels by the conventional method and are currently proceeding with mass production. In an electron beam test undertaken at the DESY, we confirmed that the K/ pi separation capability of a prototype A-RICH counter exceeded 4 sigma at 4 GeV/c.
ISSN:0168-9002
DOI:10.1016/j.nima.2014.04.030