一种新型铅闪烁瓦量热计的原型:设计和测试光束结果

T. Camporesi
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引用次数: 0

摘要

只有摘要形式。德尔福合作决定用性能更好的新热量计取代现有的小角度标签机。一个由三个方位扇区和四个径向层塔组成的原型已经建成,并在欧洲核子研究中心SPS西区测试束上暴露在能量高达70 GeV的电子中。考虑了如何通过分布在标题横截面上的波长移位光纤读出Sci-Tiles的技术选择,其密度约为1纤维/厘米/sup / 2/。在测试过程中,通过一组硅微带探测器确定了入射束粒子的轨迹,确定了撞击点优于10 μ m。有了这个很好的光束定义,就有可能以很高的精度研究弹着点的空间重建。该参数非常重要,因为量热计的目标是在未来LEP高亮度运行中以高于2%的精度测量DELPHI的光度。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Prototype of a new lead-scintillating tile calorimeter: design and test beam results
Summary form only. The DELPHI collaboration has decided to replace the existing Small Angle Tagger by a new calorimeter with better performance. A prototype comprising three azimuthal sectors and four radial layers of towers has been built and exposed to electrons of energy up to 70 GeV on the CERN SPS West Area test beam. The technical choices on how to read out the Sci-Tiles by means of wavelength shifter fibers distributed over the title cross section with a density of roughly 1 fiber/cm/sup 2/ have been considered. During the test the incoming beam particle trajectory has been defined by an array of silicon microstrip detectors which define the impact point to better than 10 mu . With this good definition of the beam it is possible to study the spatial reconstruction of the impact point with great accuracy. This parameter is extremely important as the calorimeter is aiming to measure with better than 2% precision the luminosity of DELPHI in the future high luminosity runs at LEP.<>
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