论文标题

双重阅读量热法,用于未来的实验探测基本物理

Dual-Readout Calorimetry for Future Experiments Probing Fundamental Physics

论文作者

Pezzotti, I., Newman, Harvey, Freeman, J., Hirschauer, J., Ferrari, R., Gaudio, G., Polesello, G., Santoro, R., Lucchini, M., Giagu, S., Bedeschi, F., Lee, Sehwook, Harris, P., Tully, C., Jung, A., Akchurin, Nural, Belloni, A., Eno, S., Qian, J., Zhou, B., Zhu, J., Lee, Jason Sang Hun, Vivarelli, I., Hirosky, R., Yoo, Hwidong

论文摘要

在这份2021年雪人过程的白皮书中,我们详细介绍了双阅读量热法的状态和前景。虽然所有量热量表都允许估计其活性材料中的能量沉积,但双读取量热量计的目的是通过敏感介质在敏感介质中通过(例如波长和极化)和/或精确的定时测量值提供其他信息,从而估算淋浴颗粒粒子的含量。利用对淋浴颗粒含量的这种知识,可以允许用于辐射颗粒和喷气机的前所未有的能量分辨率以及新型的粒子流量算法。我们还讨论了这种量热法可能对未来乘客的Higgs Boson属性测量的精确性的持续发展。

In this White Paper for the 2021 Snowmass process, we detail the status and prospects for dual-readout calorimetry. While all calorimeters allow estimation of energy depositions in their active material, dual-readout calorimeters aim to provide additional information on the light produced in the sensitive media via, for example, wavelength and polarization, and/or a precision timing measurements, allowing an estimation of the shower-by-shower particle content. Utilizing this knowledge of the shower particle content may allow unprecedented energy resolution for hadronic particles and jets and new types of particle flow algorithms. We also discuss the impact continued development of this kind of calorimetry could have on precision on Higgs boson property measurements at future colliders.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源