arXiv · 2203.08357
Novel Materials and Concepts for Next-Generation High Power Target Applications
Abstract
Novel beam-intercepting materials and targetry concepts are essential to improve the performance, reliability and operation lifetimes of next generation multi-megawatt (multi-MW) accelerator target facilities. The beam-intercepting materials and components must sustain an order-of-magnitude increase in particle beam intensities and are beyond the current state-of-the-art. With conventional materials already limiting the scope of experiments, it is crucial to investigate novel target materials, technologies and concepts that will satisfy the requirements and maximize the physics benefits of future energy and intensity frontier experiments. This paper provides an overview of the related targetry R&D required over the next 10 years to support and enable future high-power accelerator target facilities.
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Kavin Ammigan, Sujit Bidhar, Frederique Pellemoine, Vitaly Pronskikh, David Pushka, Katsuya Yonehara, Robert Zwaska, Adrien Couet, Michael Moorehead, Taku Ishida, Shunsuke Makimura, Christopher Densham, Michael Fitton, Eric Harvey-Fishenden, Tristan Davenne, David Jenkins, Peter Loveridge, Joe O'Dell, Chris Rogers, Dan Wilcox, Marco Calviani, Simone Gilardoni, Francois-Xavier Nuiry, Antonio Perillo-Marcone, Nathan Bultman, Jian Gao, Michael Larmann, Michael LaVere, Wolfgang Mittig, Marc Reaume, Jie Wei, Ying Xu, Gunter Muhrer, Thomas Shea, Cyrille Thomas, Michael Wohlmuther, Eiichi Wakai, Charlotte Barbier, Bernie Riemer. 2022-03-16. Novel Materials and Concepts for Next-Generation High Power Target Applications. https://arxiv.org/abs/2203.08357
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