Helical Metal Inside a Topological Band Insulator
| dc.creator | Ran, Ying | |
| dc.creator | Zhang, Yi | |
| dc.creator | Vishwanath, Ashvin | |
| dc.date | 2008-10-28 | |
| dc.date.accessioned | 2026-07-07T12:58:50Z | |
| dc.date.available | 2026-07-07T12:58:50Z | |
| dc.description | Topological defects, such as domain walls and vortices, have long fascinated physicists. A novel twist is added in quantum systems like the B-phase of superfluid helium He$_3$, where vortices are associated with low energy excitations in the cores. Similarly, cosmic strings may be tied to propagating fermion modes. Can analogous phenomena occur in crystalline solids that host a plethora of topological defects? Here we show that indeed dislocation lines are associated with one dimensional fermionic excitations in a `topological insulator', a novel band insulator believed to be realized in the bulk material Bi$_{0.9}$Sb$_{0.1}$. In contrast to fermionic excitations in a regular quantum wire, these modes are topologically protected like the helical edge states of the quantum spin-Hall insulator, and not scattered by disorder. Since dislocations are ubiquitous in real materials, these excitations could dominate spin and charge transport in topological insulators. Our results provide a novel route to creating a potentially ideal quantum wire in a bulk solid. | |
| dc.identifier | https://arxiv.org/abs/0810.5121 | |
| dc.identifier | http://arxiv.org/abs/0810.5121 | |
| dc.identifier | Nature Physics 5, 298 - 303 (2009) | |
| dc.identifier | doi:10.1038/nphys1220 | |
| dc.identifier.uri | http://salesiana.dossiersoluciones.com/handle/123456789/225380 | |
| dc.subject | Mesoscale and Nanoscale Physics | |
| dc.subject | Strongly Correlated Electrons | |
| dc.title | Helical Metal Inside a Topological Band Insulator | |
| dc.type | text |