arXiv · 1712.02771
Can Topological Transitions be Exploited to Engineer Intrinsically Quench-resistant Wires?
Abstract
We investigate whether by synthesising superconductors that are tuned to a topological, node-reconstruction transition point we could create superconducting wires that are intrinsically resilient to quenches. Recent work shows that the exponent characterising the temperature dependence of the specific heat of a nodal superconductor is lowered over a region of the phase diagram near topological transitions where nodal lines form or reconnect. Our idea is that the resulting enhancement of the low-temperature specific heat could have potential application in the prevention of superconductor quenches. We perform numerical simulations of a simplified superconductor quench model. Results show that decreasing the specific heat exponent can prevent a quench from occurring and improve quench resilience, though in our simple model the effects are small. Further work will be necessary to establish the practical feasibility of this approach.
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Philip Whittlesea, Jorge Quintanilla, James F. Annett, Adrian D. Hillier, Chris Hooley. 2017-12-07. Can Topological Transitions be Exploited to Engineer Intrinsically Quench-resistant Wires?. https://doi.org/10.1109/tasc.2018.2791515
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