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Clock distribution for BaF2 readout electronics at CSNS-WNS

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Bing He, Ping Cao, De-Liang Zhang, Qi Wang, Ya-Xi Zhang, Xin-Cheng Qi and Qi An. Clock distribution for BaF2 readout electronics at CSNS-WNS[J]. Chinese Physics C, 2017, 41(1): 016104. doi: 10.1088/1674-1137/41/1/016104
Bing He, Ping Cao, De-Liang Zhang, Qi Wang, Ya-Xi Zhang, Xin-Cheng Qi and Qi An. Clock distribution for BaF2 readout electronics at CSNS-WNS[J]. Chinese Physics C, 2017, 41(1): 016104.  doi: 10.1088/1674-1137/41/1/016104 shu
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Received: 2016-02-24
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    Supported by National Research and Development plan (2016 YFA0401602) NSAF (U1530111) and National Natural Science Foundation of China (11005107)

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Clock distribution for BaF2 readout electronics at CSNS-WNS

    Corresponding author: Ping Cao,
  • 1. State Key Laboratory of Particle Detection and Electronics, University of Science and Technology of China, Hefei 230026, China
  • 2. School of Nuclear Science and Technology, University of Science and Technology of China, Hefei 230026, China
  • 3. Department of Modern Physics, University of Science and Technology of China, Hefei 230026, China
Fund Project:  Supported by National Research and Development plan (2016 YFA0401602) NSAF (U1530111) and National Natural Science Foundation of China (11005107)

Abstract: A BaF2 (Barium Fluoride) detector array is designed to precisely measure the (n, γ) cross section at the CSNS-WNS (white neutron source at China Spallation Neutron Source). It is a 4π solid angle-shaped detector array consisting of 92 BaF2 crystal elements. To discriminate signals from the BaF2 detector, a pulse shape discrimination method is used, supported by a waveform digitization technique. There are 92 channels for digitizing. The precision and synchronization of clock distribution restricts the performance of waveform digitizing. In this paper, a clock prototype for the BaF2 readout electronics at CSNS-WNS is introduced. It is based on the PXIe platform and has a twin-stage tree topology. In the first stage, clock is synchronously distributed from the tree root to each PXIe crate through a coaxial cable over a long distance, while in the second stage, the clock is further distributed to each electronic module through a PXIe dedicated differential star bus. With the help of this topology, each tree node can fan out up to 20 clocks with 3U size. Test results show the clock jitter is less than 20 ps, which meets the requirements of the BaF2 readout electronics. Besides, this clock system has the advantages of high density, simplicity, scalability and cost saving, so it can be useful for other clock distribution applications.

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