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加速器电子冷却技术现状及最新进展

Current Status and Latest Development of Electron Cooling Technology

  • 摘要: 一个世纪以来,人类对新物理、新现象和新结构研究的不懈追求,促使粒子加速器始终向高能量、高流强和高束流品质方向发展。束流冷却技术作为提高束流品质和亮度的最有效手段,是决定加速器性能和实验精度的关键。随着国际一系列高能离子加速器的发展需求,尤其是新一代大科学装置——电子离子对撞机(美国EIC, 中国EicC)对高对撞亮度的需求,束流冷却技术在中高能量区间(离子能量>GeV/u)面临重大挑战。作为最具潜力解决方案之一,电子冷却技术是目前国内外研究的重要突破方向,一系列新理论、新方案和新问题亟需被验证和深入研究。针对未来中高能量下的束流冷却,本文介绍了近年来电子冷却技术的最新进展,并对相关装置和实验进行了简要概述,同时也对未来高能电子冷却技术的发展进行了讨论。

     

    Abstract: For a century, with the relentless pursuit in the research of new physics, new phenomena, and new structures, particle accelerators have also developed in the direction of high-energy, high-intensity, and high beam quality. Electron cooling is a powerful method to the improve the quality and brightness of the stored ion beams, which directly determines the performance of the accelerator and the accuracy of the experiments. With the development of a series of high-energy accelerators in the world, especially the high luminosity requirement of the new generation of large-scale scientific devices such as EIC and EicC, beam cooling technology in the middle- and high-energy range are facing major challenges. As one of the most potential solutions, electronic cooling technology is an important breakthrough direction of research at home and abroad. A series of new theories, new solutions and new problems need to be verified and studied. Aiming at beam cooling at medium and high energies in the future, this paper introduces the latest developments in electron cooling technology in recent years, briefly introduces the related devices and experiments, and also discusses the development of high-energy electron cooling technology in the future.

     

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