论文标题

间隙实验对低能量宇宙射线抗抗蛋白酶的敏感性

Sensitivity of the GAPS Experiment to Low-energy Cosmic-ray Antiprotons

论文作者

Rogers, Field, Aramaki, Tsuguo, Boezio, Mirko, Boggs, Steven, Bonvicini, Valter, Bridges, Gabriel, Campana, Donatella, Craig, William W., von Doetinchem, Philip, Everson, Eric, Fabris, Lorenzo, Feldman, Sydney, Fuke, Hideyuki, Gahbauer, Florian, Gerrity, Cory, Hailey, Charles J., Hayashi, Takeru, Kawachi, Akiko, Kozai, Masayoshi, Lenni, Alex, Lowell, Alexander, Manghisoni, Massimo, Marcelli, Nadir, Mochizuki, Brent, Mognet, Isaac, Munakata, Kazuoki, Munini, Riccardo, Nakagami, Yusuke, Olson, Jerome, Ong, Rene, Osteria, Guiseppe, Perez, Kerstin M., Quinn, Sean, Re, Valerio, Riceputi, Elisa, Roach, Brandon, Ryan, Jaime, Saffold, Nathan, Scotti, Valentina, Shimizu, Yuki, Sparvoli, Roberta, Stoessl, Achim, Tiberio, Alessio, Vannuccini, Elena, Wada, Takuya, Xiao, Mengjiao, Yamatani, Masahiro, Yee, Kelsey, Yoshida, Atsumasa, Yoshida, Tetsuya, Zampa, Gianluigi, Zeng, Jiancheng, Zweerink, Jeffrey

论文摘要

一般的反粒子光谱仪(GAPS)是即将到来的气球任务,旨在在至少三天约35天的南极飞行中测量低能宇宙射线反核。凭借其较大的几何认可和新型外来原子的颗粒鉴定,GAP将在每次飞行中检测约500个宇宙抗抗原子,并在大气顶部的动能能量范围内产生精度的宇宙抗抗晶光谱。由于这些高统计数据延伸至更低的能量,而且与传统磁光谱仪相比,实验不确定性的互补来源,抗抗原子测量的GAPS测量将对暗物质,原始黑孔和宇宙射线播种敏感。抗抗原子测量还将验证抗ideuteron和抗较稀有事实搜索的差距抗核心识别技术。该分析证明了使用完整的仪器模拟和事件重建以及包括太阳和大气效应的宇宙射线反植物的差距敏感性。

The General Antiparticle Spectrometer (GAPS) is an upcoming balloon mission to measure low-energy cosmic-ray antinuclei during at least three ~35-day Antarctic flights. With its large geometric acceptance and novel exotic atom-based particle identification, GAPS will detect ~500 cosmic antiprotons per flight and produce a precision cosmic antiproton spectrum in the kinetic energy range of ~0.07-0.21 GeV/n at the top of the atmosphere. With these high statistics extending to lower energies than any previous experiment, and with complementary sources of experimental uncertainty compared to traditional magnetic spectrometers, the GAPS antiproton measurement will be sensitive to dark matter, primordial black holes, and cosmic ray propagation. The antiproton measurement will also validate the GAPS antinucleus identification technique for the antideuteron and antihelium rare-event searches. This analysis demonstrates the GAPS sensitivity to cosmic-ray antiprotons using a full instrument simulation and event reconstruction, and including solar and atmospheric effects.

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