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October 1, 2013Physical Review Letters386 citationsOpen Access

Interplay between Classical Magnetic Moments and Superconductivity in Quantum One-Dimensional Conductors: Toward a Self-Sustained Topological Majorana Phase

BBBernd BrauneckerPSPascal Simon

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Abstract

We study a one-dimensional interacting electronic liquid coupled to a 1D array of classical magnetic moments and to a superconductor. We show that at low energy and temperature the magnetic moments and the electrons become strongly entangled and that a magnetic spiral structure emerges. For strong enough coupling between the electrons and magnetic moments, the 1D electronic liquid is driven into a topological superconducting phase supporting Majorana fermions without any fine-tuning of external parameters. Our analysis applies at low enough temperature to a quantum wire in proximity to a superconductor when the hyperfine interaction between electrons and nuclear spins is taken into account, or to a chain of magnetic adatoms adsorbed on a superconducting surface.

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Cite This Study

Braunecker et al. (2013) studied this question.

synapsesocial.com/papers/6a22d51740a1f8b699604e7chttps://doi.org/10.1103/physrevlett.111.147202
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