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Teleportation by a Majorana Medium
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It is argued that Majorana zero modes in a system of quantum fermions can mediate a teleportation-like process with the actual transfer of electronic material between well separated points. The problem is formulated in the context of a quasi-realistic and exactly solvable model of a quantum wire embedded in a bulk p-wave superconductor. An explicit computation of the tunneling amplitude is given.
Forward citations
Cited by 2 Pith papers
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Phase-controlled quasi-bound states in the continuum and thermoelectric enhancement in Majorana-quantum-dot nanostructures
Phase differences between two Majorana superconducting wires create quadratic transmission zeros in a quantum-dot device, yielding a predicted electronic ZT_el≈0.75 and a universal Wiedemann–Franz violation of 21/5.
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Coherent manipulation of Kondo Majoranas in two-channel Kondo setups
Theoretical study shows Kondo Majoranas in overscreened two-channel Kondo setups support non-local qubits with teleportation, fusion, and braiding, with topological Y-junctions realizing non-Abelian geometric holonomy.
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