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A liquid helium target system for a measurement of parity violation in neutron spin rotation

机译:一种用于测量中子自旋旋转中奇偶校验违反的液氦靶系统

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A liquid helium target system was designed and built to perform a precision measurement of the parity-violating neutron spin rotation in helium due to the nucleon-nucleon weak interaction. The measurement employed a beam of low energy neutrons that passed through a crossed neutron polarizer-analyzer pair with the liquid helium target system located between them. Changes between the target states generated differences in the beam transmission through the polarizer-analyzer pair. The amount of parity-violating spin rotation was determined from the measured beam transmission asymmetries. The expected parity-violating spin rotation of order 10~(-6) rad placed severe constraints on the target design. In particular, isolation of the parity-odd component of the spin rotation from a much larger background rotation caused by magnetic fields required that a nonmagnetic cryostat and target system be supported inside the magnetic shielding, while allowing nonmagnetic motion of liquid helium between separated target chambers. This paper provides a detailed description of the design, function, and performance of the liquid helium target system.
机译:设计并构建了液氦靶系统,以对由于核子-核子的弱相互作用而导致氦气中违反奇偶校验的中子自旋旋转进行精确测量。测量使用一束低能中子,该束中子穿过交叉的中子极化器-分析仪对,液态氦靶系统位于它们之间。目标状态之间的变化在通过偏振镜-分析仪对的光束传输中产生差异。由测得的光束透射不对称性确定违反奇偶校验的自旋旋转量。预期的违反奇偶校验的自旋旋转约为10〜(-6)rad,这对目标设计提出了严格的限制。特别是,要使自旋旋转的奇数奇数分量与由磁场引起的大得多的背景旋转相隔离,需要在磁屏蔽内部支撑非磁性低温恒温器和靶系统,同时允许液氦在分离的靶腔之间进行非磁性运动。本文详细介绍了液氦靶系统的设计,功能和性能。

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