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Instrument performance study on the short and long pulse options of the second Spallation Neutron Source target station

机译:第二个散裂中子源目标站短脉冲和长脉冲选项的仪器性能研究

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The Spallation Neutron Source (SNS) facility at the Oak Ridge National Laboratory is designed with an upgrade option for a future low repetition rate, long wavelength second target station. This second target station is intended to complement the scientific capabilities of the 1.4 MW, 60 Hz high power first target station. Two upgrade possibilities have been considered, the short and the long pulse options. In the short pulse mode, proton extraction occurs after the pulse compression in the accumulator ring. The proton pulse structure is thus the same as that for the first target station with a pulse width of ∼0.7 μs. In the long pulse mode, protons are extracted as they are produced by the linac, with no compression in the accumulator ring. The time width of the uncompressed proton pulse is ∼1 ms. This difference in proton pulse structure means that neutron pulses will also be different. Neutron scattering instruments thus have to be designed and optimized very differently for these two source options which will directly impact the overall scientific capabilities of the SNS facility. In order to assess the merits of the short and long pulse target stations, we investigated a representative suit of neutron scattering instruments and evaluated their performance under each option. Our results indicate that the short pulse option will offer significantly better performance for the instruments and is the preferred choice for the SNS facility.
机译:橡树岭国家实验室的散裂中子源(SNS)设施设计有升级选项,可用于未来的低重复率,长波长的第二目标站。该第二目标站旨在补充1.4 MW,60 Hz大功率第一目标站的科学能力。已经考虑了两种升级可能性,短脉冲和长脉冲选项。在短脉冲模式下,质子提取发生在储能环中的脉冲压缩之后。因此,质子脉冲结构与第一目标站点的质子脉冲结构相同,脉冲宽度为〜0.7μs。在长脉冲模式下,质子在由直线加速器产生时被提取,而在储能环中没有压缩。未压缩质子脉冲的时间宽度约为1 ms。质子脉冲结构的这种差异意味着中子脉冲也将不同。因此,对于这两种来源的选择,中子散射仪器的设计和优化必须完全不同,这将直接影响SNS设施的整体科学能力。为了评估短脉冲目标站和长脉冲目标站的优点,我们研究了一套具有代表性的中子散射仪器,并评估了每种选择下它们的性能。我们的结果表明,短脉冲选件将为仪器提供明显更好的性能,并且是SNS设施的首选。

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