The existing Nuclear Resonance Fluorescence (NRF) setup at the HI{\gamma}S facility at the Triangle Universities Nuclear Laboratory at Duke University has been extended in order to perform {\gamma}-{\gamma} coincidence experiments. The new setup combines large volume LaBr3:Ce detectors and high resolution HPGe detectors in a very close geometry to offer high efficiency, high energy resolution as well as high count rate capabilities at the same time. The combination of a highly efficient {\gamma}-ray spectroscopy setup with the mono-energetic high-intensity photon beam of HI{\gamma}S provides a worldwide unique experimental facility to investigate the {\gamma}-decay pattern of dipole excitations in atomic nuclei. The performance of the new setup has been assessed by studying the nucleus \sulfur at 8.125 MeV beam energy. The {\gamma}-decay branching ratio from the $1^+$ level at 8125.4 keV to the first excited $2^+$ state was determined to 15.7(3)%.
翻译:杜克大学三角大学核实验室的HI 伽马-伽马核实验室现有核共振荧光仪设施(NRF)已经扩大,以进行“伽马-伽马-伽马-”巧合实验。新的装置结合了大型LaBr3:Ce探测器和高分辨率HPGe探测器,以非常近的几何方法提供高效、高能量分辨率和高计数率的同步能力。HI-伽马-S的单浓度高光束光束装置与HI-Gamma-S的单浓度高光束相光谱装置相结合,为调查原子核中低温极低的色模式提供了独特的全球实验设施。新装置的性能通过在8.125兆维能量中研究核的电源来评估。根据8125兆维的8125.4千兆瓦到第1位的1兆瓦的1++2兆瓦的1兆瓦分流率确定为15.7(3) %。