Junction between surfaces of two topological insulators
Diptiman Sen, Oindrila Deb

TL;DR
This paper investigates the electronic properties and scattering phenomena at the junction between surfaces of two topological insulators, revealing how velocities, angles, and a parameter lpha influence edge states and conductance.
Contribution
It introduces a theoretical framework for understanding scattering, edge states, and conductance at topological insulator surface junctions with varying velocities and orientations.
Findings
Edge states depend on the parameter lpha and velocity ratios.
Surface angle affects scattering and conductance.
Opposite surface velocities lead to transmission into the interface.
Abstract
We study the properties of a line junction which separates the surfaces of two three-dimensional topological insulators. The velocities of the Dirac electrons on the two surfaces may be unequal and may even have opposite signs. For a time reversal invariant system, we show that the line junction is characterized by an arbitrary parameter \alpha which determines the scattering from the junction. If the surface velocities have the same sign, we show that there can be edge states which propagate along the line junction with a velocity and orientation of the spin which depend on \alpha and the ratio of the velocities. Next, we study what happens if the two surfaces are at an angle \phi with respect to each other. We study the scattering and differential conductance through the line junction as functions of \phi and \alpha. We also find that there are edge states which propagate along the…
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Taxonomy
TopicsTopological Materials and Phenomena · Quantum and electron transport phenomena · Graphene research and applications
