论文标题

搜索具有SRF腔的新粒子,暗物质和重力波

Searches for New Particles, Dark Matter, and Gravitational Waves with SRF Cavities

论文作者

Berlin, Asher, Belomestnykh, Sergey, Blas, Diego, Frolov, Daniil, Brady, Anthony J., Braggio, Caterina, Carena, Marcela, Cervantes, Raphael, Checchin, Mattia, Contreras-Martinez, Crispin, D'Agnolo, Raffaele Tito, Ellis, Sebastian A. R., Eremeev, Grigory, Gao, Christina, Giaccone, Bianca, Grassellino, Anna, Harnik, Roni, Hollister, Matthew, Janish, Ryan, Kahn, Yonatan, Kazakov, Sergey, Kurkcuoglu, Doga Murat, Liu, Zhen, Lunin, Andrei, Netepenko, Alexander, Melnychuk, Oleksandr, Pilipenko, Roman, Pischalnikov, Yuriy, Posen, Sam, Romanenko, Alex, Schutte-Engel, Jan, Wang, Changqing, Yakovlev, Vyacheslav, Zhou, Kevin, Zorzetti, Silvia, Zhuang, Quntao

论文摘要

这是一张雪人白皮书,讲述了现有和未来的超导腔探测基本物理学的效用。超导射频(SRF)腔技术在过去几十年中取得了巨大进步,作为加速器科学的工具。凭借Fermilab的SQMS中心的矛头,他们现在正被带到量子制度成为量子科学的工具,这要归功于高度的连贯性。在寻找新物理学的搜索中,可以利用相同的高质量因子,包括寻找新颗粒,暗物质,包括QCD轴和重力波。我们调查了一些物理机会和研发的所需方向。鉴于已经证明了SRF腔体在大加速器系统中的整合,因此该研发可能通过专门的实验来实现大规模的搜索。

This is a Snowmass white paper on the utility of existing and future superconducting cavities to probe fundamental physics. Superconducting radio frequency (SRF) cavity technology has seen tremendous progress in the past decades, as a tool for accelerator science. With advances spear-headed by the SQMS center at Fermilab, they are now being brought to the quantum regime becoming a tool in quantum science thanks to the high degree of coherence. The same high quality factor can be leveraged in the search for new physics, including searches for new particles, dark matter, including the QCD axion, and gravitational waves. We survey some of the physics opportunities and the required directions of R&D. Given the already demonstrated integration of SRF cavities in large accelerator systems, this R&D may enable larger scale searches by dedicated experiments.

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