超导射频腔研发的关键方向
加速器物理
2022-08-23 v2
摘要
射频超导是许多未来高能物理(HEP)粒子加速器与实验的基石技术,从对撞机到用于中微子设施的质子驱动器,再到暗物质搜寻。尽管超导射频(SRF)腔的性能在过去数十年显著提升,且 SRF 技术已实现新应用,但所提出的 HEP 设施与实验带来了新挑战。为应对这些挑战,该领域持续产生新思路,且似乎存在巨大的改进空间。本文讨论与未来 HEP 需求相对接并应对这些需求的关键研究方向。
引用
@article{arxiv.2204.01178,
title = {Key directions for research and development of superconducting radio frequency cavities},
author = {S. Belomestnykh and S. Posen and D. Bafia and S. Balachandran and M. Bertucci and A. Burrill and A. Cano and M. Checchin and G. Ciovati and L. D. Cooley and G. Dalla Lana Semione and J. Delayen and G. Eremeev and F. Furuta and F. Gerigk and B. Giaccone and D. Gonnella and A. Grassellino and A. Gurevich and W. Hillert and M. Iavarone and J. Knobloch and T. Kubo and W. K. Kwok and R. Laxdal and P. J. Lee and M. Liepe and M. Martinello and O. S. Melnychuk and A. Nassiri and A. Netepenko and H. Padamsee and C. Pagani and R. Paparella and U. Pudasaini and C. E. Reece and D. Reschke and A. Romanenko and M. Ross and K. Saito and J. Sauls and D. N. Seidman and N. Solyak and Z. Sung and K. Umemori and A. -M. Valente-Feliciano and W. Venturini Delsolaro and N. Walker and H. Weise and U. Welp and M. Wenskat and G. Wu and X. X. Xi and V. Yakovlev and A. Yamamoto and J. Zasadzinski},
journal= {arXiv preprint arXiv:2204.01178},
year = {2022}
}
备注
contribution to Snowmass 2021