$8\pi$-periodic dissipationless ac Josephson effect on a quantum spin-Hall edge via a Quantum magnetic impurity
About
Time-reversal invariance places strong constraints on the properties of the quantum spin Hall edge. One such restriction is the inevitability of dissipation in a Josephson junction between two superconductors formed on such an edge without the presence of interaction. Interactions and spin-conservation breaking are key ingredients for the realization of dissipationless ac Josephson effect on such quantum spin Hall edges. We present a simple quantum impurity model that allows to create a dissipationless fractional Josephson effect on a quantum spin Hall edge. We then use this model to substantiate a general argument that shows that any such non-dissipative Josephson effect must necessarily by $8\pi$-periodic.
Hoi-Yin Hui, Jay D. Sau• 2016
Related benchmarks
| Task | Dataset | Result | Rank | |
|---|---|---|---|---|
| Graph Classification | PROTEINS | Accuracy70.5 | 742 | |
| Graph Classification | MUTAG | Accuracy70.47 | 697 | |
| Node Classification | Chameleon | Accuracy45.02 | 549 | |
| Node Classification | Squirrel | Accuracy34.52 | 500 | |
| Node Classification | Cornell | Accuracy73.7 | 426 | |
| Node Classification | Wisconsin | Accuracy84.39 | 410 | |
| Node Classification | Texas | Accuracy0.7943 | 410 | |
| Node Classification | amazon-ratings | Accuracy46.65 | 138 | |
| Transductive Node Classification | Cora 100 random dataset splits | Accuracy0.8235 | 12 | |
| Transductive Node Classification | Citeseer 100 random dataset splits | Accuracy73.16 | 12 |
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