4.6 Article

Time scales for Majorana manipulation using Coulomb blockade in gate-controlled superconducting nanowires

期刊

PHYSICAL REVIEW B
卷 94, 期 3, 页码 -

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AMER PHYSICAL SOC
DOI: 10.1103/PhysRevB.94.035424

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  1. Crafoord Foundation
  2. Swedish Research Council
  3. Danish National Research Foundation

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We numerically compute the low-energy spectrum of a gate-controlled superconducting topological nanowire segmented into two islands, each Josephson coupled to a bulk superconductor. This device may host two pairs of Majorana bound states and could provide a platform for testing Majorana fusion rules. We analyze the crossover between (i) a charge-dominated regime utilizable for initialization and readout of Majorana bound states, (ii) a single-island regime for dominating interisland Majorana coupling, (iii) a Josephson-plasmon regime for large coupling to the bulk superconductors, and (iv) a regime of four Majorana bound states allowing for topologically protected Majorana manipulations. From the energy spectrum, we derive conservative estimates for the time scales of a fusion-rule testing protocol proposed recently (D. Aasen et al., arXiv:1511.05153). We also analyze the steps needed for basic Majorana braiding operations in branched nanowire structures.

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