We study the proximity effect between an s-wave superconductor and the surface states of a strong topological insulator. The resulting two-dimensional state resembles a spinless px + ipy superconductor, but does not break time reversal symmetry. This state supports Majorana bound states at vortices. We show that linear junctions between superconductors mediated by the topological insulator form a nonchiral one-dimensional wire for Majorana fermions, and that circuits formed from these junctions provide a method for creating, manipulating, and fusing Majorana bound states
One of the most promising proposals for engineering topological superconductivity and Majorana fermi...
The main focus of this thesis is to understand the correlations present at the s-wave/three-dimensio...
The engineering of non-trivial topology in superconducting heterostructures is a very challenging ta...
We study the proximity effect between an s-wave superconductor and the surface states of a strong to...
Topological insulator edges and spin-orbit-coupled quantum wires in proximity to s-wave superconduct...
We consider a three-dimensional topological insulator (TI) wire with a nonuniform chemical potential...
Topological insulator edges and spin-orbit-coupled quantum wires in proximity to s-wave superconduct...
Topological insulator edges and spin-orbit-coupled quantum wires in proximity to s-wave superconduct...
To guide experimental work on the search for Majorana zero-energy modes, we calculate the supercondu...
We study proximity-induced superconductivity on the surface of a topological insulator (TI), focusin...
It is known that a non-local complex fermion can be written in terms of two Majorana fermions. We ex...
Artificially engineered topological superconductivity has emerged as a viable route to create Majora...
One-dimensional systems proximity coupled to a superconductor can be driven into a topological super...
Topological superconductors can support localized Majorana states at their boundaries(1-5). These qu...
Recent experimental efforts towards the detection of Majorana bound states have focused on creating ...
One of the most promising proposals for engineering topological superconductivity and Majorana fermi...
The main focus of this thesis is to understand the correlations present at the s-wave/three-dimensio...
The engineering of non-trivial topology in superconducting heterostructures is a very challenging ta...
We study the proximity effect between an s-wave superconductor and the surface states of a strong to...
Topological insulator edges and spin-orbit-coupled quantum wires in proximity to s-wave superconduct...
We consider a three-dimensional topological insulator (TI) wire with a nonuniform chemical potential...
Topological insulator edges and spin-orbit-coupled quantum wires in proximity to s-wave superconduct...
Topological insulator edges and spin-orbit-coupled quantum wires in proximity to s-wave superconduct...
To guide experimental work on the search for Majorana zero-energy modes, we calculate the supercondu...
We study proximity-induced superconductivity on the surface of a topological insulator (TI), focusin...
It is known that a non-local complex fermion can be written in terms of two Majorana fermions. We ex...
Artificially engineered topological superconductivity has emerged as a viable route to create Majora...
One-dimensional systems proximity coupled to a superconductor can be driven into a topological super...
Topological superconductors can support localized Majorana states at their boundaries(1-5). These qu...
Recent experimental efforts towards the detection of Majorana bound states have focused on creating ...
One of the most promising proposals for engineering topological superconductivity and Majorana fermi...
The main focus of this thesis is to understand the correlations present at the s-wave/three-dimensio...
The engineering of non-trivial topology in superconducting heterostructures is a very challenging ta...