顺磁性
反铁磁性
凝聚态物理
中子衍射
单晶
磁化率
结晶学
化学
晶体结构
磁化
磁矩
物理
磁场
量子力学
作者
Laura L. Kiefer,Ferdinand F. Wirth,Alexandre Bertin,P. Becker,L. Bohatý,K. Schmalzl,A. Stunault,J. Alberto Rodríguez‐Velamazán,Óscar Fabelo,M. Braden
标识
DOI:10.1088/1361-648x/adad2a
摘要
Abstract RuO 2 was considered for a long time to be a paramagnetic metal with an ideal rutile-type structure down to low temperatures, but recent studies on single-crystals claimed evidence for antiferromagnetic order and some symmetry breaking in the crystal structure. We have grown single-crystals of RuO 2 by vapor transport using either O 2 or TeCl 4 as transport medium. These crystals exhibit metallic behavior following a T 2 low-temperature relation and a small paramagnetic susceptibility that can be attributed to Pauli paramagnetism. Neither the conductance nor the susceptibility measurements yield any evidence for a magnetic or a structural transition between 300 K and ∼4 K. Comprehensive single-crystal diffraction studies with neutron and x-ray radiation reveal the rutile structure to persist until 2 K in our crystals, and show nearly perfect stoichiometry. Previous observations of symmetry forbidden reflections can be attributed to multiple diffraction. Polarized single-crystal neutron diffraction experiments at 1.6 K exclude the proposed antiferromagnetic structures with ordered moments larger than 0.01 Bohr magnetons.
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