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  6. Pressure-driven high-to-low spin transition in the bimetallic quantum magnet [Ru2(O2CMe)4]3[Cr(CN)6]
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Pressure-driven high-to-low spin transition in the bimetallic quantum magnet [Ru2(O2CMe)4]3[Cr(CN)6]

Source Publication
Physical Review B
Date Issued
September 2, 2014
Author(s)
O'Neal, Kenneth Robert
Liu, Zhenxian
Miller, Joel S
Fishman, Randy S.
Musfeldt, Janice  
DOI
10.1103/PhysRevB.90.104301
Permanent URI
https://trace.tennessee.edu/handle/20.500.14382/16218
Abstract

Synchrotron-based infrared and Raman spectroscopies were brought together with diamond anvil cell techniques and an analysis of the magnetic properties to investigate the pressure-induced high → low spin transition in [Ru2(O2CMe)4]3[Cr(CN)6]. The extended nature of the diruthenium wave function combined with coupling to chromium-related local lattice distortions changes the relative energies of the π ∗ and δ ∗ orbitals and drives the high → low spin transition on the mixed-valence diruthenium complex. This is a rare example of an externally controlled metamagnetic transition in which both spin-orbit and spin-lattice interactions contribute to the mechanism.

Submission Type
Post-print
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Name

_2014_O_Neal__Pressure_driven_high_to_low_spin_transition_in_the_bimetallic_quantum_magnet_CrRu.pdf

Size

1.28 MB

Format

Adobe PDF

Checksum (MD5)

8fa64ce7b3eb66750553d1233ab57961


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