论文标题
彗星I期在线触发系统的辐射公差
Radiation tolerance of online trigger system for COMET Phase-I
论文作者
论文摘要
该彗星实验旨在寻找具有新的灵敏度水平的电子中性smuon到电子过渡过程。在线触发系统是达到所需敏感性水平的组成部分,并将受到预期的中子能量,最高为$ 10^{12} $ $ $ n \ cdot \ cdot \ mathrm {cm}^{ - 2} \; $在检测器螺栓内部的区域内。因此,可能会发生大量的软错误,在车载场逻辑上可编程门阵列(FPGA)可能发生,需要单个事件Upsept和固件重编程方案的错误校正,以解决无法恢复的软错误。我们研究了称为cottri的彗星I期前端触发系统的辐射公差,但在$ 10^{12} $ 10^{12} $ $ n \ CDOT \ CDOT \ CDOT \ MATHRM {CM}^{ - 2}} \; $的情况下,具有多个错误校正代码和自动固件Reconfiguration。所测量的区域是使用铜电缆的配置RAM,阻止RAM以及在多Gigabit传输链路中,这些铜电缆将用于阶段I期间不同触发板之间的通信。观察到的结果横截面表明,对实验的最重大影响将来自配置RAM中无法恢复的软错误,预计死时间为$(4.2 \ pm 1.3)\%$。发现块RAM中多位误差的影响几乎可以忽略不计。此外,已经提出了多种解决方案,以进一步抑制这些错误。与配置RAM中不可恢复的误差相比,在多gabit转移链路中观察到的软误差的影响较小。我们得出的结论是,Cottri系统满足彗星I期中的触发要求。
The COMET experiment aims to search for the neutrinoless muon to electron transition process with new sensitivity levels. The online trigger system is an integral part of achieving the sensitivity levels required and will be subject to an expected neutron fluence of up to $10^{12}$ $n \cdot \mathrm{cm}^{-2}\;$ within regions inside the detector solenoid. Consequently a significant number of soft errors in the logic of the onboard field programmable gate arrays (FPGA) can occur, requiring error correction for single event upsets and firmware reprogramming schemes for unrecoverable soft errors. We studied the radiation tolerance of the COMET Phase-I front-end trigger system, called COTTRI, subject to neutron fluence on order $10^{12}$ $n \cdot \mathrm{cm}^{-2}\;$ with multiple error correcting codes and automatic firmware reconfiguration. The regions measured were the configuration RAM, block RAM and also in a multi-gigabit transfer link using copper cables that will be used for communication between different trigger boards during Phase-I. The resulting cross sections observed suggest the most significant impact to the experiment will come from unrecoverable soft errors in configuration RAM, with dead time expected to be $(4.2 \pm 1.3)\%$. The effect of multi-bit errors in block RAM was found to be almost negligible in COMET Phase-I. In addition, multiple solutions have already been proposed in order to suppress these errors further. Soft errors observed in the multi-gigabit transfer links were measured to be of two orders of magnitude less impact compared to the unrecoverable errors in configuration RAM. We concluded that the COTTRI system meets the trigger requirement in COMET Phase-I.