论文标题
摘要报告应用程序和行业社区参与边界雪大马2021的主题小组
Summary Report Topical Group on Application and Industry Community Engagement Frontier Snowmass 2021
论文作者
论文摘要
HEP社区领导并运营着能源部科学办公室的尖端实验,这些实验具有挑战性的感应,数据处理和计算要求,这些要求超过了典型的工业应用。为了在能源,材料和基础科学方面取得必要的进步,通常需要开发新技术来实现这些高级探测器和加速器程序。我们的功能包括有效的共同设计,这是在科学环境中部署高级技术的先决条件,在科学环境中,开发跨越了从快速原型到稳健而可靠的生产规模。这适用于从低水平制造技术到高级软件开发的设计频谱。它基于对整体创新方法的要求,该方法加速了技术开发和部署的周期。下一代实验制定的挑战需要学术界,工业和国家实验室之间的协作方法。只有一个利益相关者将无法提供科学目标成功所需的技术。为高能物理学(HEP)开发的工具和技术可以在科学科学办公室和其他联邦计划中更广泛地加速科学发现,并使行业应用受益。
HEP community leads and operates cutting-edge experiments for the DOE Office of Science which have challenging sensing, data processing, and computing requirements that far surpass typical industrial applications. To make necessary progress in the energy, material, and fundamental sciences, development of novel technologies is often required to enable these advanced detector and accelerator programs. Our capabilities include efficient co-design, which is a prerequisite to enable the deployment of advanced techniques in a scientific setting where development spans from rapid prototyping to robust and reliable production scale. This applies across the design spectrum from the low level fabrication techniques to the high level software development. It underpins the requirement for a holistic approach of innovation that accelerates the cycle of technology development and deployment. The challenges set by the next generation of experiments requires a collaborative approach between academia, industry and national labs. Just a single stakeholder will be unable to deliver the technologies required for the success of the scientific goals. Tools and techniques developed for High Energy Physics (HEP) research can accelerate scientific discovery more broadly across DOE Office of Science and other federal initiatives and also benefit industry applications.