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下一代金刚石电池及其在单晶中子衍射中的应用。

Next-generation diamond cell and applications to single-crystal neutron diffraction.

作者信息

Haberl Bianca, Dissanayake Sachith, Wu Yan, Myles Dean A A, Dos Santos Antonio M, Loguillo Mark, Rucker Gerald M, Armitage Douglas P, Cochran Malcolm, Andrews Katie M, Hoffmann Christina, Cao Huibo, Matsuda Masaaki, Meilleur Flora, Ye Feng, Molaison Jamie J, Boehler Reinhard

机构信息

Neutron Scattering Division, Neutron Sciences Directorate, Oak Ridge National Laboratory, Oak Ridge, Tennessee 37831, USA.

出版信息

Rev Sci Instrum. 2018 Sep;89(9):092902. doi: 10.1063/1.5031454.

Abstract

A diamond cell optimized for single-crystal neutron diffraction is described. It is adapted for work at several of the single-crystal diffractometers of the Spallation Neutron Source and the High Flux Isotope Reactor at the Oak Ridge National Laboratory (ORNL). A simple spring design improves portability across the facilities and affords load maintenance from offline pressurization and during temperature cycling. Compared to earlier prototypes, pressure stability of polycrystalline diamond (Versimax®) has been increased through double-conical designs and ease of use has been improved through changes to seat and piston setups. These anvils allow ∼30%-40% taller samples than possible with comparable single-crystal anvils. Hydrostaticity and the important absence of shear pressure gradients have been established with the use of glycerin as a pressure medium. Large single-crystal synthetic diamonds have also been used for the first time with such a clamp-diamond anvil cell for pressures close to 20 GPa. The cell is made from a copper beryllium alloy and sized to fit into ORNL's magnets for future ultra-low temperature and high-field studies. We show examples from the Spallation Neutron Source's SNAP and CORELLI beamlines and the High Flux Isotope Reactor's HB-3A and IMAGINE beamlines.

摘要

本文描述了一种针对单晶中子衍射优化的金刚石压腔。它适用于橡树岭国家实验室(ORNL)散裂中子源和高通量同位素反应堆的多个单晶衍射仪的工作。一种简单的弹簧设计提高了在各设施间的便携性,并能在离线加压和温度循环期间维持负载。与早期的原型相比,通过双锥形设计提高了多晶金刚石(Versimax®)的压力稳定性,并通过改变座和活塞设置提高了易用性。这些砧座允许使用比类似单晶砧座高约30%-40%的样品。使用甘油作为压力介质已确立了流体静力学以及重要的无剪切压力梯度情况。大型单晶合成金刚石也首次用于这种夹钳式金刚石压腔,用于接近20 GPa的压力。该压腔由铍铜合金制成,尺寸适合安装在ORNL的磁体中,用于未来的超低温和高场研究。我们展示了散裂中子源的SNAP和CORELLI光束线以及高通量同位素反应堆的HB-3A和IMAGINE光束线的示例。

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