<p>The Cooling Storage Ring of the Heavy Ion Research Facility in Lanzhou (HIRFL-CSR) was constructed to study nuclear physics, atomic physics, interdisciplinary science, and related applications. The External Target Facility (ETF) is located in the main ring of the HIRFL-CSR. The gamma detector of the ETF is built to measure emitted gamma rays with energies below 5 MeV in the center-of-mass frame and is planned to measure light fragments with energies up to 300 MeV. The readout electronics for the gamma detector were designed and commissioned. The readout electronics consist of thirty-two front-end cards, thirty-two readout control units (RCUs), one common readout unit, one synchronization &amp; clock unit, and one sub-trigger unit. By using the real-time peak-detection algorithm implemented in the RCU, the data volume can be significantly reduced. In addition, trigger logic selection algorithms are implemented to improve the selection of useful events and reduce the data size. The test results show that the integral nonlinearity of the readout electronics is less than 1%, and the energy resolution for measuring the <InlineEquation ID="IEq1"> <InlineMediaObject> <ImageObject Color="BlackWhite" FileRef="41365_2024_1603_Article_IEq1.gif" Format="GIF" Height="10" Rendition="HTML" Resolution="72" Type="Linedraw" Width="13" /> </InlineMediaObject> <EquationSource Format="TEX">\(^{60}\)</EquationSource> <EquationSource Format="MATHML"><math> <mmultiscripts> <mrow /> <mrow /> <mn>60</mn> </mmultiscripts> </math></EquationSource> </InlineEquation>Co source is better than 5.5%. This study discusses the design and performance of the readout electronics.</p>

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Readout electronics for the gamma detector of the HIRFL-CSR external target facility

  • Xian-Qin Li,
  • Hai-Bo Yang,
  • Xiao-Meng Ma,
  • Chao-Jie Zou,
  • Tao Liu,
  • Xian-Cai Zhou,
  • Duo Yan,
  • Yang-Zhou Su,
  • Shu-Wen Tang,
  • Shi-Tao Wang,
  • Yu-Hong Yu,
  • Zhi-Yu Sun,
  • Cheng-Xin Zhao

摘要

The Cooling Storage Ring of the Heavy Ion Research Facility in Lanzhou (HIRFL-CSR) was constructed to study nuclear physics, atomic physics, interdisciplinary science, and related applications. The External Target Facility (ETF) is located in the main ring of the HIRFL-CSR. The gamma detector of the ETF is built to measure emitted gamma rays with energies below 5 MeV in the center-of-mass frame and is planned to measure light fragments with energies up to 300 MeV. The readout electronics for the gamma detector were designed and commissioned. The readout electronics consist of thirty-two front-end cards, thirty-two readout control units (RCUs), one common readout unit, one synchronization & clock unit, and one sub-trigger unit. By using the real-time peak-detection algorithm implemented in the RCU, the data volume can be significantly reduced. In addition, trigger logic selection algorithms are implemented to improve the selection of useful events and reduce the data size. The test results show that the integral nonlinearity of the readout electronics is less than 1%, and the energy resolution for measuring the \(^{60}\) 60 Co source is better than 5.5%. This study discusses the design and performance of the readout electronics.