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The GREAT triggerless total data readout method

机译:伟大的触发器总数据读数方法

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Recoil Decay Tagging (RDT) is a very powerful method for the spectroscopy of exotic nuclei. RDT is a delayed coincidence technique between detectors usually at the target position and at the focal plane of a spectrometer. Such measurements are often limited by dead time. This paper describes a novel triggerless data acquisition method which is being developed for the Gamma Recoil Electron Alpha Tagging (GREAT) spectrometer that overcomes this limitation by virtually eliminating dead time. Our solution is a Total Data Readout (TDR) method where all channels run independently and are associated in software to reconstruct events. The TDR method allows all the data from both target position and focal plane to be collected with practically no dead time losses. Each data word is associated with a timestamp generated from a global 100MHz clock. Events are then reconstructed in real time in the event builder using temporal and spatial associations defined by the physics of the experiment.
机译:反冲衰减标记(RDT)是异国情调核的光谱的一种非常强大的方法。 RDT是通常在目标位置和光谱仪的焦平面之间的探测器之间的延迟易巧合技术。这种测量通常受到死区时间的限制。本文介绍了一种新颖的令人触发数据采集方法,用于伽马反冲电子α标记(伟大)光谱仪,通过几乎消除死区时间来克服这种限制。我们的解决方案是总数据读数(TDR)方法,所有通道独立运行,并在软件中关联以重建事件。 TDR方法允许从目标位置和焦平面上的所有数据以实际上没有死区时间损失收集。每个数据字与从全局100MHz时钟生成的时间戳相关联。然后使用由实验的物理学定义的时间和空间关联实时在事件构建器中实时重建事件。

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