Neutron Scattering Studies of Spin Fluctuations in High Temperature Superconductors
T.E. Mason (University of Toronto, Oak Ridge National Laboratory)

TL;DR
Neutron scattering studies reveal detailed insights into spin fluctuations in high-temperature superconductors, showing how magnetic excitations evolve across the superconducting transition in La_{2-x}Sr_{x}CuO_{4} and YBa_{2}Cu_{3}O_{7-x}.
Contribution
This review consolidates recent neutron scattering results, providing a comprehensive picture of spin fluctuation spectra and their changes in high-Tc superconductors due to superconducting transition.
Findings
Normal state exhibits incommensurate magnetic fluctuations.
Superconducting transition suppresses low energy excitations and enhances higher energy response.
Resonant response develops in YBa_{2}Cu_{3}O_{7-x} with energy varying with T_{c}.
Abstract
Neutron scattering can provide detailed information about the energy and momentum dependence of the magnetic dynamics of materials provided sufficiently large single crystals are available. This requirement has limited the number of rare earth high temperature superconducting materials that have been studied in any detail. However, improvements in crystal growth in recent years has resulted in considerable progress in our understanding of the behaviour of the magnetism of the CuO planes in both the superconducting and normal state. This review will focus primarily on the spin fluctuations in La_{2-x}Sr_{x}CuO_{4} and YBa_{2}Cu_{3}O_{7-x} since these are the two systems for which the most detailed results are available. Although gaps in our understanding remain, there is now a consistent picture of on the spin fluctuation spectra in both systems as well as the changes induced by the…
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Taxonomy
TopicsPhysics of Superconductivity and Magnetism · Advanced Condensed Matter Physics · Magnetic and transport properties of perovskites and related materials
