Spin-orbit-driven magnetic structure and excitation in the 5d pyrochlore Cd2Os2O7

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作者
S. Calder
J. G. Vale
N. A. Bogdanov
X. Liu
C. Donnerer
M. H. Upton
D. Casa
A. H. Said
M. D. Lumsden
Z. Zhao
J. -Q. Yan
D. Mandrus
S. Nishimoto
J. van den Brink
J. P. Hill
D. F. McMorrow
A. D. Christianson
机构
[1] Oak Ridge National Laboratory,Quantum Condensed Matter Division
[2] London Centre for Nanotechnology,Condensed matter physics and materials science department
[3] University College London,Department of Materials Science and Engineering
[4] Institute for Theoretical Solid State Physics,Materials Science and Technology Division
[5] IFW Dresden,Department of Physics & Astronomy
[6] Brookhaven National Laboratory,undefined
[7] Beijing National Laboratory for Condensed Matter Physics and Institute of Physics,undefined
[8] Chinese Academy of Sciences,undefined
[9] Advanced Photon Source,undefined
[10] Argonne National Laboratory,undefined
[11] University of Tennessee,undefined
[12] Oak Ridge National Laboratory,undefined
[13] Institute for Theoretical Physics,undefined
[14] Technische Universität Dresden,undefined
[15] University of Tennessee,undefined
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摘要
Much consideration has been given to the role of spin-orbit coupling (SOC) in 5d oxides, particularly on the formation of novel electronic states and manifested metal-insulator transitions (MITs). SOC plays a dominant role in 5d5 iridates (Ir4+), undergoing MITs both concurrent (pyrochlores) and separated (perovskites) from the onset of magnetic order. However, the role of SOC for other 5d configurations is less clear. For example, 5d3 (Os5+) systems are expected to have an orbital singlet with reduced effective SOC. The pyrochlore Cd2Os2O7 nonetheless exhibits a MIT entwined with magnetic order phenomenologically similar to pyrochlore iridates. Here, we resolve the magnetic structure in Cd2Os2O7 with neutron diffraction and then via resonant inelastic X-ray scattering determine the salient electronic and magnetic energy scales controlling the MIT. In particular, SOC plays a subtle role in creating the electronic ground state but drives the magnetic order and emergence of a multiple spin-flip magnetic excitation.
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