Observation of Half-Quantum Vortices in Topological Superfluid He 3

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Abstract

One of the most sought-after objects in topological quantum-matter systems is a vortex carrying half a quantum of circulation. They were originally predicted to exist in superfluid He3-A but have never been resolved there. Here we report an observation of half-quantum vortices (HQVs) in the polar phase of superfluid He3. The vortices are created with rotation or by the Kibble-Zurek mechanism and identified based on their nuclear magnetic resonance signature. This discovery provides a pathway for studies of unpaired Majorana modes bound to the HQV cores in the polar-distorted A phase.

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Autti, S., Dmitriev, V. V., Mäkinen, J. T., Soldatov, A. A., Volovik, G. E., Yudin, A. N., … Eltsov, V. B. (2016). Observation of Half-Quantum Vortices in Topological Superfluid He 3. Physical Review Letters, 117(25). https://doi.org/10.1103/PhysRevLett.117.255301

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