Status of the R&D towards electron cooling of RHIC

I. Ben-Zvi, J. Alduino, D. Barton, D. Beavis, M. Blaskiewicz, J. Brennan, A. Burrill, R. Calaga, P. Cameron, X. Chang, A. Drees, A. Fedotov, W. Fischer, G. Ganetis, D. Gassner, J. Grimes, H. Hahn, L. Hammons, A. Hershcovitch, H. Hseuh, D. Kayran, J. Kewisch, R. Lambiase, D. Lederle, V. Litvinenko, C. Longo, W. Mackay, G. Mahler, G. Mclntyre, W. Meng, B. Oerter, C. Pai, G. Parzen, D. Pate, D. Phillips, S. Plate, E. Pozdeyev, T. Rao, J. Reich, T. Roser, A. Ruggiero, T. Russo, C. Schultheiss, Z. Segalov, J. Smedley, K. Smith, T. Tallerico, S. Tepikian, R. Than, R. Todd, D. Trbojevic, J. Tuozzolo, P. Wanderer, G. Wang, D. Weiss, Q. Wu, K. Yip, A. Zaltsman, A. Favale, D. Holmes, J. Sredniawski, H. Bluem, M. Cole, J. Rathke, T. Schultheiss, A. Todd, V. Parkhomchuk, V. Reva, A. Burov, S. Nagaitsev, L. Prost, A. Sidorin, A. Smirnov, Y. Derbenev, P. Kneisel, J. Mammosser, L. Phillips, J. Preble, C. Reece, R. Rimmer, J. Saunders, M. Stirbet, H. Wang, A. Aleksandrov, D. Douglas, Y. Kang, D. Abell, G. Bell, D. Bruhwi
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引用次数: 13

Abstract

The physics interest in a luminosity upgrade of RHIC requires the development of a cooling-frontier facility. Detailed calculations were made of electron cooling of the stored RHIC beams. This has been followed by beam dynamics simulations to establish the feasibility of creating the necessary electron beam. The electron beam accelerator will be a superconducting Energy Recovery Linac (ERL). An intensive experimental R&D program engages the various elements of the accelerator, as described by 24 contributions to the 2007 PAC.
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RHIC电子冷却的研究现状
物理学对RHIC亮度升级的兴趣要求开发冷却前沿设施。对储存的RHIC束流的电子冷却进行了详细的计算。随后进行了电子束动力学模拟,以确定创建必要电子束的可行性。电子束加速器将是超导能量回收直线加速器(ERL)。一个密集的实验研发计划涉及加速器的各种元素,正如2007年PAC的24篇文章所描述的那样。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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