论文标题

Snowmass主题组摘要报告:IF04-触发和数据采集系统

Snowmass Topical Group Summary Report: IF04 -- Trigger and Data Acquisition Systems

论文作者

Acosta, Darin, Deiana, Allison, Ketchum, Wesley

论文摘要

未来高能物理实验的趋势是检测器产生的数据带宽的增加。 PETABYTE量表的数据集已经成为规范,未来实验的要求 - 大小,暴露和复杂性更大 - 将进一步将数据采集技术的限制推向每秒exabytes的数据速率。这些未来数据密集型物理设施的挑战在于通过以高性能触发器的形式组合成熟的事件选择来减少数据流,并通过压缩和计算高级数量来改善数据表示。这些任务必须以低延迟(即实时)和极端环境进行,包括高辐射,高磁场和低温温度。

A trend for future high energy physics experiments is an increase in the data bandwidth produced from the detectors. Datasets of the Petabyte scale have already become the norm, and the requirements of future experiments -- greater in size, exposure, and complexity -- will further push the limits of data acquisition technologies to data rates of exabytes per seconds. The challenge for these future data-intensive physics facilities lies in the reduction of the flow of data through a combination of sophisticated event selection in the form of high-performance triggers and improved data representation through compression and calculation of high-level quantities. These tasks must be performed with low-latency (i.e. in real-time) and often in extreme environments including high radiation, high magnetic fields, and cryogenic temperatures.

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