Quantized charge transport in chiral Majorana edge modes
Majorana fermions can be realized as quasiparticles in topological superconductors, with potential applications in topological quantum computing. Recently, lattices of magnetic adatoms deposited on the surface of s-wave superconductors - Shiba lattices - have been proposed as a new platform for topo...
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Abstract | Majorana fermions can be realized as quasiparticles in topological superconductors, with potential applications in topological quantum computing. Recently, lattices of magnetic adatoms deposited on the surface of s-wave superconductors - Shiba lattices - have been proposed as a new platform for topological superconductivity. These systems possess the great advantage that they are accessible via scanning-probe techniques, and thus enable the local manipulation and detection of Majorana modes. Realizing quantum bits on this basis will rely on the creation of nanoscopic Shiba lattices, so-called Shiba islands. Here, we demonstrate that the topological Majorana edge modes of such islands display universal electronic and transport properties. Most remarkably, these Majorana modes possess a quantized charge conductance that is proportional to the topological Chern number, C, and carry a supercurrent whose chirality reflects the sign of C. These results establish nanoscopic Shiba islands as promising components in future topology-based devices. |
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AbstractList | Phys. Rev. B 96, 205131 (2017), Editors' suggestion Majorana fermions can be realized as quasiparticles in topological
superconductors, with potential applications in topological quantum computing.
Recently, lattices of magnetic adatoms deposited on the surface of s-wave
superconductors - Shiba lattices - have been proposed as a new platform for
topological superconductivity. These systems possess the great advantage that
they are accessible via scanning-probe techniques, and thus enable the local
manipulation and detection of Majorana modes. Realizing quantum bits on this
basis will rely on the creation of nanoscopic Shiba lattices, so-called Shiba
islands. Here, we demonstrate that the topological Majorana edge modes of such
islands display universal electronic and transport properties. Most remarkably,
these Majorana modes possess a quantized charge conductance that is
proportional to the topological Chern number, C, and carry a supercurrent whose
chirality reflects the sign of C. These results establish nanoscopic Shiba
islands as promising components in future topology-based devices. Majorana fermions can be realized as quasiparticles in topological superconductors, with potential applications in topological quantum computing. Recently, lattices of magnetic adatoms deposited on the surface of s-wave superconductors - Shiba lattices - have been proposed as a new platform for topological superconductivity. These systems possess the great advantage that they are accessible via scanning-probe techniques, and thus enable the local manipulation and detection of Majorana modes. Realizing quantum bits on this basis will rely on the creation of nanoscopic Shiba lattices, so-called Shiba islands. Here, we demonstrate that the topological Majorana edge modes of such islands display universal electronic and transport properties. Most remarkably, these Majorana modes possess a quantized charge conductance that is proportional to the topological Chern number, C, and carry a supercurrent whose chirality reflects the sign of C. These results establish nanoscopic Shiba islands as promising components in future topology-based devices. |
Author | Vojta, Matthias Morr, Dirk K Cocklin, Sagen Mascot, Eric Stephan, Rachel |
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BackLink | https://doi.org/10.1103/PhysRevB.96.205131$$DView published paper (Access to full text may be restricted) https://doi.org/10.48550/arXiv.1705.05378$$DView paper in arXiv |
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Snippet | Majorana fermions can be realized as quasiparticles in topological superconductors, with potential applications in topological quantum computing. Recently,... Phys. Rev. B 96, 205131 (2017), Editors' suggestion Majorana fermions can be realized as quasiparticles in topological superconductors, with potential... |
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SubjectTerms | Adatoms Charge transport Chirality Fermions Islands Lattices Physics - Mesoscale and Nanoscale Physics Physics - Superconductivity Quantum computing Qubits (quantum computing) Resistance Superconductivity Topological superconductors Topology Transport properties |
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Title | Quantized charge transport in chiral Majorana edge modes |
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