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November 12, 2013Physical Review Letters328 citationsOpen Access

Self-Organized Topological State with Majorana Fermions

MVM. M. VazifehMFMarcel Franz

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Abstract

Most physical systems known to date tend to resist entering the topological phase and must be fine-tuned to reach that phase. Here, we introduce a system in which a key dynamical parameter adjusts itself in response to the changing external conditions so that the ground state naturally favors the topological phase. The system consists of a quantum wire formed of individual magnetic atoms placed on the surface of an ordinary s-wave superconductor. It realizes the Kitaev paradigm of topological superconductivity when the wave vector characterizing the emergent spin helix dynamically self-tunes to support the topological phase. We call this phenomenon a self-organized topological state.

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Cite This Study

Vazifeh et al. (2013) studied this question.

synapsesocial.com/papers/6a217255db71e1dfcf8b6ad7https://doi.org/10.1103/physrevlett.111.206802
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