Experimental tests of particle flow calorimetry

Experimental tests of particle flow calorimetry
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DOI:
10.1103/revmodphys.88.015003
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发表时间:
2015-07
影响因子:
44.1
通讯作者:
F. Sefkow;Andy White;K. Kawagoe;R. Poschl;J. Repond
F. Sefkow;Andy White;K. Kawagoe;R. Poschl;J. Repond
中科院分区:
物理与天体物理1区
文献类型:
--
作者:
F. Sefkow;Andy White;K. Kawagoe;R. Poschl;J. Repond

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未来对撞机的精密物理学需要高度颗粒化的量热计来支持粒子流方法进行事件重建。本文介绍了大约10 - 15年的R\&D的审查,主要是在CALICE合作,这种新型的探测器。大规模原型在束流测试中的性能验证了粒子流量热计的技术概念。试验梁数据与模拟结果的比较,例如:强子簇射,支持全面的探测器研究,并提供了更深入的了解强子级联的结构比以前可能的。
Precision physics at future colliders requires highly granular calorimeters to support the Particle Flow Approach for event reconstruction. This article presents a review of about 10 - 15 years of R\&D, mainly conducted within the CALICE collaboration, for this novel type of detector. The performance of large scale prototypes in beam tests validate the technical concept of particle flow calorimeters. The comparison of test beam data with simulation, of e.g.\ hadronic showers, supports full detector studies and gives deeper insight into the structure of hadronic cascades than was possible previously.