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首页> 外文期刊>Nuclear Instruments & Methods in Physics Research >The barrel DIRC detector for the PANDA experiment at FAIR
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The barrel DIRC detector for the PANDA experiment at FAIR

机译:FAIR的PANDA实验桶DIRC检测器

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The PANDA experiment at FAIR will perform high precision experiments in the charmed quark sector using cooled antiproton beams of unprecedented intensities of L=2 × 10~32cm~-2s~-1 in the momentum range of l-15GeV/c. The charged particle identification in the barrel region needs a thin detector operating in a strong magnetic field. A ring imaging Cherenkov detector using the DIRC principle is an excellent match to those requirements. This article describes aspects of the design and R&D for the PANDA barrel DIRC detector. The availability of highly pixelated fast photon detectors allows several key improvements compared to the successful BaBar-DIRC detector, some of which were tested in a proton beam at GSI. The optical properties of the radiator bars, made from synthetic fused silica, are critical to the success of the DIRC. Measurements of the attenuation length and reflection coefficient allow the determination of the surface roughness of prototype radiator bars.
机译:FAIR上的PANDA实验将在迷惑的夸克扇区中使用冷却的反质子束(在L-15GeV / c的动量范围内为L = 2×10〜32cm〜-2s〜-1)执行前所未有的强度的高精度实验。桶状区域中带电粒子的识别需要在强磁场下工作的薄探测器。使用DIRC原理的环形成像Cherenkov检测器非常符合这些要求。本文介绍了PANDA桶式DIRC检测器的设计和研发方面。与成功的BaBar-DIRC检测器相比,高度像素化的快速光子检测器的可用性实现了几项关键的改进,其中一些在GSI的质子束中进行了测试。由合成熔融石英制成的散热条的光学性能对于DIRC的成功至关重要。衰减长度和反射系数的测量可以确定原型散热器条的表面粗糙度。

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