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Development of electromagnetic calorimeter using GSO and LYSO crystals for the J-PARC muon-to-electron conversion search experiment

机译:利用GSO和LYSO晶体开发用于J-PARC介电转换实验的电磁量热仪

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An electromagnetic calorimeter (ECAL) using an inorganic scintillating crystal has recently been developed for the COMET experiment at J-PARC in Japan, which searches for muon-to-electron conversion of a charged lepton flavor violating process. The ECAL is required to have an energy resolution better than 5% at 105 MeV, position resolution shorter than 1 cm, and time response faster than 100 ns which can be operated in a vacuum and a magnetic field of 1 T. A prototype ECAL was developed with the candidate crystals of GSO (GdSiO) and LYSO (LuYSiO). A beam test was carried out using an electron beam of 65 - 145 MeV/c at the Research Center for Electron Photon Science at Tohoku University in Japan. The results were as follows: Both the crystals have good linearity. GSO (LYSO) has energy resolution of 5.50 ± 0.02(stat) ± 0.04(syst) % (4.91 ± 0.01(stat) ± 0.07(syst) %), and position resolution of 8.1 mm (7.9 mm) at 105 MeV/c. The energy and position resolution depend on the beam incident position on the ECAL.
机译:最近,在日本J-PARC的COMET实验中,开发了一种使用无机闪烁晶体的电磁量热仪(ECAL),该实验研究了带电轻子风味违规过程的μ到电子转换。要求ECAL在105 MeV时的能量分辨率优于5%,位置分辨率小于1 cm,时间响应大于100 ns,可以在真空和1 T的磁场中运行。用GSO(GdSiO)和LYSO(LuYSiO)的候选晶体进行了开发。电子束测试是在日本东北大学电子光子科学研究中心使用65-145 MeV / c的电子束进行的。结果如下:两种晶体均具有良好的线性。 GSO(LYSO)的能量分辨率为5.50±0.02(stat)±0.04(syst)%(4.91±0.01(stat)±0.07(syst)%),在105 MeV / c时的位置分辨率为8.1 mm(7.9 mm) 。能量和位置分辨率取决于ECAL上的光束入射位置。

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