Writing for experts in the magnetic properties of strongly correlated electronic systems and for students of applied physics specialties, the authors (both of the Institute for Low Temperature Physics, Ukraine) address the magnetic and magnetoelastic properties of antiferromagnets and superconductors in the vicinity of phase transitions induced by a magnetic field. It argues that under these conditions the inhomogenous states appear in antiferromagnets, similar to the intermediate state of type 1 superconductor or the mixed ...
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Writing for experts in the magnetic properties of strongly correlated electronic systems and for students of applied physics specialties, the authors (both of the Institute for Low Temperature Physics, Ukraine) address the magnetic and magnetoelastic properties of antiferromagnets and superconductors in the vicinity of phase transitions induced by a magnetic field. It argues that under these conditions the inhomogenous states appear in antiferromagnets, similar to the intermediate state of type 1 superconductor or the mixed state in type II superconductor. It also discusses the measurements for simple representatives of antiferromagnets and superconductors like the transition metal based uni-axial two-sublattice antiferromagnetic insulator and superconducting dichalcogenide 2H-NbSe2, which reveal quantum oscillations of magnetostriction and its peculiarities in a peak effect regime. Distributed in the US by Enfield.
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