Structural Phase Transition and Carrier Density Tuning in SnSexTe1-x Nanoplates for Topological Crystalline Insulators
arXiv:1603.02241 · doi:10.1002/aelm.201600144
Abstract
For topological insulators and topological crystalline insulators (TCIs), their exotic surface states are promising for fundamental condensed matter physics research as well as future electronics such as low-dissipation electronics and spintronics. However, the high bulk carrier density that often dominates the transport property is the major materials challenge, critically hindering our ability to study and manipulate the surface states. In this manuscript, we demonstrate an alloying strategy, SnSexTe1-x, to effectively reduce the bulk carrier density. As long as SnSexTe1-x remains in the cubic crystal structure, it is predicted to be a TCI. We show systematic decrease of the bulk carrier density with the increasing Se concentration, demonstrating that the alloying principle works. In addition, we map out the phase diagram of the cubic to the orthorhombic structural transition as a function of the Se concentration. This was made possible by studying alloy nanoplates which remain single-crystalline and is either in the cubic or the orthorhombic phase, in contrast to bulk alloys that would exhibit polycrystalline grains. Lastly, we investigate systematically the ferroelectric transition associated with the structural transition from the cubic to the rhombohedral phase for SnSexTe1-x. This is the first ferroelectric transition study of the alloy system SnSexTe1-x.
25 pages, 4 figures
References in corpus (11)
- Topological Crystalline Insulators
- Coexistence of the topological state and a two-dimensional electron gas on the surface of Bi2Se3
- Bulk Fermi surface coexistence with Dirac surface state in BiSe: a comparison of photoemission and Shubnikov-de Haas measurements
- Observation of topological surface state quantum Hall effect in an intrinsic three-dimensional topological insulator
- Observation of Dirac Holes and Electrons in a Topological Insulator
- Controlling bulk conductivity in topological insulators: Key role of anti-site defects
- Quasiparticle band structures and thermoelectric transport properties of p-type SnSe
- Synthesis of SnTe Nanoplates with {100} and {111} Surfaces
- Revealing surface states in In-doped SnTe superconducting nanoplates with low bulk mobility
- Experimental realization of a topological p-n junction by intrinsic defect-grading
- Topological Crystalline Insulator Nanostructures