Department of Physics, Technical University of Denmark, DK-2800, Kgs., Lyngby, Denmark.
Laboratory for Neutron Scattering and Imaging, Paul Scherrer Institute, 5232, Villigen, Switzerland.
Sci Rep. 2018 Feb 2;8(1):2214. doi: 10.1038/s41598-018-20461-7.
Through the use of Time-of-Flight Three Dimensional Polarimetric Neutron Tomography (ToF 3DPNT) we have for the first time successfully demonstrated a technique capable of measuring and reconstructing three dimensional magnetic field strengths and directions unobtrusively and non-destructively with the potential to probe the interior of bulk samples which is not amenable otherwise. Using a pioneering polarimetric set-up for ToF neutron instrumentation in combination with a newly developed tailored reconstruction algorithm, the magnetic field generated by a current carrying solenoid has been measured and reconstructed, thereby providing the proof-of-principle of a technique able to reveal hitherto unobtainable information on the magnetic fields in the bulk of materials and devices, due to a high degree of penetration into many materials, including metals, and the sensitivity of neutron polarisation to magnetic fields. The technique puts the potential of the ToF time structure of pulsed neutron sources to full use in order to optimise the recorded information quality and reduce measurement time.
通过使用飞行时间三维极片面中子层析成像技术(ToF 3DPNT),我们首次成功地展示了一种能够非侵入式和非破坏性地测量和重建三维磁场强度和方向的技术,具有探测大容量样品内部的潜力,否则这种方法是不可行的。该技术使用了一种开创性的用于飞行时间中子仪器的极片面装置,并结合了新开发的定制重建算法,测量并重建了电流通过的螺线管产生的磁场,从而为一种能够揭示迄今无法获得的材料和器件内部磁场信息的技术提供了原理验证,这是由于该技术对许多材料(包括金属)具有高度的穿透性,以及中子极化对磁场的敏感性。该技术充分利用了脉冲中子源的飞行时间结构的优势,以优化记录信息的质量并减少测量时间。