论文标题

对未来山脉的分段晶体热量表的新观点

New perspectives on segmented crystal calorimeters for future colliders

论文作者

Lucchini, Marco T., Chung, Wonyong, Eno, Sarah C., Lai, Yihui, Lucchini, Lorenzo, Nguyen, Minh-Thi, Tully, Christopher G.

论文摘要

晶体热量表具有悠久的历史,即在高分辨率电磁(EM)量热法上推动前沿。 We explore in this paper major innovations in collider detector performance that can be achieved with crystal calorimetry when longitudinal segmentation and dual-readout capabilities are combined with a new high EM resolution approach to PFA in multi-jet events, such as $e^+e^+\rightarrow HZ$ events in all-hadronic final-states at Higgs factories.我们演示了一种新技术,用于通过使用JET算法之前的组合Di-Photon配对来预处理$π^0 $ MOMMA。此过程大大降低了$π^0 $光子在多重生事件中跨喷气机的分裂。正确的光子到喷射效率提高了3倍,其中$ 3 \%/\ sqrt {e} $ EM分辨率提高。另外,Bremsstrahung光子恢复的技术显着改善了电子动量测量。高EM分辨率量热计增加了Higgstrahung事件中的Z玻璃反应量质量分辨率,以使电子对腐烂到MUON对的80%。我们介绍了高度分割的晶体检测器概念的设计和优化,该晶体探测器概念可实现所需的能量分辨率,并且时间分辨率优于30 PS,提供了出色的粒子识别能力。我们证明,与以前的探测器设计相反,与以前的探测器设计相反,该设计遭受了大型中性强体分辨率的降解,从一个晶体的相互作用长度下,在采样强生热量激量计的前面,在晶体上实施了双重读取允许在晶体上实施,可以实现比30 \%/\ sqrt {e} e} {e} \ oplus 2 \%$ $ $ $ $ $ 30 \%/\ sqrt的分辨率。我们的研究发现,将晶体量热法的整合到未来的希格斯工厂对撞机探测器中可以通过在PFA范式中产生最高水平的EM和中性强子分辨率来打开新的观点。

Crystal calorimeters have a long history of pushing the frontier on high-resolution electromagnetic (EM) calorimetry. We explore in this paper major innovations in collider detector performance that can be achieved with crystal calorimetry when longitudinal segmentation and dual-readout capabilities are combined with a new high EM resolution approach to PFA in multi-jet events, such as $e^+e^+\rightarrow HZ$ events in all-hadronic final-states at Higgs factories. We demonstrate a new technique for pre-processing $π^0$ momenta through combinatoric di-photon pairing in advance of applying jet algorithms. This procedure significantly reduces $π^0$ photon splitting across jets in multi-jet events. The correct photon-to-jet assignment efficiency improves by a factor of 3 with a $3\%/\sqrt{E}$ EM resolution. In addition, the technique of bremsstrahlung photon recovery significantly improves electron momentum measurements. A high EM resolution calorimeter increases the Z boson recoil mass resolution in Higgstrahlung events for decays into electron pairs to 80% of that for muon pairs. We present the design and optimization of a highly segmented crystal detector concept that achieves the required energy resolution, and a time resolution better than 30 ps providing exceptional particle identification capabilities. We demonstrate that, contrary to previous detector designs that suffered from large neutral hadron resolution degradation from one interaction length of crystals in front of a sampling hadron calorimeter, the implementation of dual-readout on crystals permits to achieve a resolution better than $30\%/\sqrt{E}\oplus 2\%$ for neutral hadrons. Our studies find that the integration of crystal calorimetry into future Higgs factory collider detectors can open new perspectives by yielding the highest level of combined EM and neutral hadron resolution in the PFA paradigm.

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