Nucleation and Antiphase Twin Control in BiSe via Step-Terminated AlO Substrates
arXiv:2505.18103 · doi:10.1002/adfm.202513054
Abstract
The epitaxial synthesis of high-quality 2D layered materials is an essential driver of both fundamental physics studies and technological applications. BiSe, a prototypical 2D layered topological insulator, is sensitive to defects imparted during the growth, either thermodynamically or due to the film-substrate interaction. In this study, it is shown that step-terminated AlO substrates with a high miscut angle (3°) can effectively suppress a particular hard-to-mitigate defect, the antiphase twin. Systematic investigations across a range of growth temperatures and substrate miscut angles confirm that atomic step edges act as preferential nucleation sites, stabilizing a single twin domain. First-principles calculations suggest that there is a significant energy barrier for twin boundary formation at step edges, supporting the experimental observations. Detailed structural characterization indicates that this twin-selectivity is lost through the mechanism of the 2D layers overgrowing the step edges, leading to higher twin density as the thickness increases. These findings highlight the complex energy landscape unique to 2D materials that is driven by the interplay between substrate properties, nucleation dynamics, and defect formation, and overcoming and controlling these are critical to improve material quality for quantum and electronic applications.
References in corpus (15)
- Discovery (theoretical prediction and experimental observation) of a large-gap topological-insulator class with spin-polarized single-Dirac-cone on the surface
- Colloquium: Quantum anomalous Hall effect
- Epitaxial growth of topological insulator Bi2Se3 film on Si(111) with atomically sharp interface
- Topological-Metal to Band-Insulator Transition in (Bi1-xInx)2Se3 Thin Films
- Emergence of decoupled surface transport channels in bulk insulating Bi2Se3 thin films
- Molecular beam epitaxy of high structural quality Bi2Se3 on lattice matched InP(111) substrates
- Crossover of Ising- to Rashba-Type Superconductivity in Epitaxial Bi2Se3/Monolayer NbSe2 Heterostructures
- Suppressing twin formation in Bi2Se3 thin films
- Record-High Proximity-Induced Anomalous Hall Effect in (BiSb)2Te Thin Film Grown on CrGeTe Substrate
- Characterizing the Structure of Topological Insulator Thin Films
- Finite-size and composition-driven topological phase transition in (BiIn)Se thin films
- Observation of 2D Weyl Fermion States in Epitaxial Bismuthene
- Quantum-Hall to Insulator Transition in Ultra-low-carrier-density Topological Insulator Films and a Hidden Phase of the Zeroth Landau Level
- Structurally and Chemically Compatible BiInSe3 Substrate for Topological Insulator Thin Films
- Interplay between Topological States and Rashba States as Manifested on Surface Steps at Room Temperature