论文标题

重型光子搜索实验

The Heavy Photon Search Experiment

论文作者

Baltzell, Nathan, Battaglieri, Marco, Bondi, Mariangela, Boyarinov, Sergei, Bravo, Cameron, Bueltmann, Stephen, Burkert, Volker, Butti, Pierfrancesco, Cao, Tongtong, Carpinelli, Massimo, Celentano, Andrea, Charles, Gabriel, Cuevas, Chris, D'Angelo, Annalisa, D'Urso, Domenico, Dashyan, Natalia, De Napoli, Marzio, De Vita, Raffaella, Deur, Alexandre, Diamond, Miriam, Dupre, Raphael, Essig, Rouven, Fadeyev, Vitaliy, Field, R. Clive, Filippi, Alessandra, Gaiser, Sarah, Gevorgyan, Nerses, Graf, Norman, Graham, Mathew, Guidal, Michel, Herbst, Ryan, Holtrop, Maurik, Jaros, John, Johnson, Robert, Kubarovsky, Valery, Marchand, Dominique, Marsicano, Luca, Maruyama, Takashi, McCarty, Samantha, McCormick, Jeremy, McKinnon, Bryan, Moreno, Omar, Munoz-Camacho, Carlos, Nelson, Timothy, Niccolai, Silvia, O'Dwyer, Rory, Paremuzyan, Rafayel, Peets, Emrys, Randazzo, Nunzio, Raydo, Benjamin, Reese, Benjamin, Schuster, Philip, Simi, Gabriele, Sipala, Valeria, Solt, Matthew, Spellman, Alic, Stepanyan, Stepan, Szumila-Vance, Holly, Tompkins, Lauren, Toro, Natalia, Ungaro, Maurizio, Voskanyan, Hakop

论文摘要

重型光子搜索(HPS)实验旨在在20 MeV/$ C^2 $至220 MEV/$ C^2 $的质量范围内搜索新的Vector Boson $ a^\ prime $,该级别与标准模型光子与耦合$ε^2> 10> 10^{ - 10} $。 In addition to the general importance of exploring light, weakly coupled physics that is difficult to probe with high-energy colliders, a prime motivation for this search is the possibility that sub-GeV thermal relics constitute dark matter, a scenario that requires a new comparably light mediator, where models with a hidden $U(1)$ gauge symmetry, a "dark", "hidden sector", or "heavy" photon, are particularly attractive. HPS搜索这些重光子的可见签名,利用其与电荷的小耦合,通过类似于Bremsstrahung的过程在固定目标中产生它们,并检测到其随后的衰减到$ \ Mathrm {E}^+ \ \ \ \ \ \ \ \ \ \ \ \ \ \ \ \ \ \ \ \ \ \ \ {e}^ - $ Pairs compact Expectreptremotempormetermetormeter。除了搜索$ \ mathrm {e}^+ \ mathrm {e}^ - $ $ QED背景上的共振外,HPS还具有精确测量衰减长度的能力,从而产生了对深色光子的独特敏感性,以及其他长寿的新物理学。在2015年和2016年在JLAB CEBAF完成工程运行的实验和运行后,物理学在2019年和2021年运行,已提供了目前正在分析的数据集,以搜索深色光子和其他新现象。

The Heavy Photon Search (HPS) experiment is designed to search for a new vector boson $A^\prime$ in the mass range of 20 MeV/$c^2$ to 220 MeV/$c^2$ that kinetically mixes with the Standard Model photon with couplings $ε^2 >10^{-10}$. In addition to the general importance of exploring light, weakly coupled physics that is difficult to probe with high-energy colliders, a prime motivation for this search is the possibility that sub-GeV thermal relics constitute dark matter, a scenario that requires a new comparably light mediator, where models with a hidden $U(1)$ gauge symmetry, a "dark", "hidden sector", or "heavy" photon, are particularly attractive. HPS searches for visible signatures of these heavy photons, taking advantage of their small coupling to electric charge to produce them via a process analogous to bremsstrahlung in a fixed target and detect their subsequent decay to $\mathrm{e}^+ \mathrm{e}^-$ pairs in a compact spectrometer. In addition to searching for $\mathrm{e}^+ \mathrm{e}^-$ resonances atop large QED backgrounds, HPS has the ability to precisely measure decay lengths, resulting in unique sensitivity to dark photons, as well as other long-lived new physics. After completion of the experiment and operation of engineering runs in 2015 and 2016 at the JLab CEBAF, physics runs in 2019 and 2021 have provided datasets that are now being analyzed to search for dark photons and other new phenomena.

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