Study of Thin Iron Films for Polarization Analysis of Ultracold Neutrons

H. Akatsuka, Takashi Higuchi, S. Hansen-Romu, K. Hatanaka, Tomohiro Hino, G. Ichikawa, S. Imajo, B. Jamieson, S. Kawasaki, M. Kitaguchi, R. Matsumiya, K. Mishima
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引用次数: 1

Abstract

The TUCAN (TRIUMF Ultra-Cold Advanced Neutron) collaboration aims to search for the neutron electric dipole moment (nEDM) with unprecedented precision. One of the essential elements for the nEDM measurement is a polarization analyzer of ultracold neutrons (UCNs), whose main component is a magnetized thin iron film. Several thin iron films were deposited on aluminum and silicon substrates and were characterized by vibrating sample magnetometry and cold-neutron reflectometry. A magnetic field required to saturate the iron film is ∼ 12 kA / m for those on the aluminum substrates and 6.4 kA / m for the silicon substrates. The magnetic potential of the iron films on the Si substrate was estimated to be 2 T by the neutron reflectometry, which is su ffi cient performance for an UCN polarization analyzer of the nEDM measurement.
超冷中子极化分析用铁薄膜的研究
TUCAN (TRIUMF超冷先进中子)合作旨在以前所未有的精度搜索中子电偶极矩(nEDM)。超冷中子偏振分析仪是nEDM测量的基本元件之一,其主要成分是磁化的铁薄膜。在铝和硅衬底上沉积了几层铁薄膜,并用振动样品磁强计和冷中子反射法对其进行了表征。饱和铁膜所需的磁场对于铝衬底为~ 12 kA / m,对于硅衬底为6.4 kA / m。通过中子反射法估计了Si衬底上铁膜的磁势为2 T,这是UCN极化分析仪测量nEDM的有效性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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