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Weak-Coupling Theory of Topological Superconductivity - The Case of Strontium Ruthenate (Hardcover, 1st ed. 2017): Thomas... Weak-Coupling Theory of Topological Superconductivity - The Case of Strontium Ruthenate (Hardcover, 1st ed. 2017)
Thomas Scaffidi
R2,653 Discovery Miles 26 530 Ships in 18 - 22 working days

This thesis sheds important new light on the puzzling properties of Strontium Ruthenate. Using a sophisticated weak-coupling approach, exact within certain limits, it shows that proper treatment of spin-orbit and multi-band effects is crucial to the physics. Based on the results of these calculations, it resolves a crucial, long-standing puzzle in the field: It demonstrates why the experimentally observed time-reversal breaking is not incompatible with the observed lack of measurable edge currents. Lastly, the thesis makes predictions for the properties of the material under uniaxial strain, which are in good agreement with recent experiments -resolving the mystery of the so-called 3K phase, and suggesting the intriguing possibility that under strain the superconductor may become conventional.

Weak-Coupling Theory of Topological Superconductivity - The Case of Strontium Ruthenate (Paperback, Softcover reprint of the... Weak-Coupling Theory of Topological Superconductivity - The Case of Strontium Ruthenate (Paperback, Softcover reprint of the original 1st ed. 2017)
Thomas Scaffidi
R2,943 Discovery Miles 29 430 Ships in 18 - 22 working days

This thesis sheds important new light on the puzzling properties of Strontium Ruthenate. Using a sophisticated weak-coupling approach, exact within certain limits, it shows that proper treatment of spin-orbit and multi-band effects is crucial to the physics. Based on the results of these calculations, it resolves a crucial, long-standing puzzle in the field: It demonstrates why the experimentally observed time-reversal breaking is not incompatible with the observed lack of measurable edge currents. Lastly, the thesis makes predictions for the properties of the material under uniaxial strain, which are in good agreement with recent experiments -resolving the mystery of the so-called 3K phase, and suggesting the intriguing possibility that under strain the superconductor may become conventional.

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