Understanding and controlling the transport properties of interacting fermions is a key forefront in quantum physics across a variety of experimental platforms. Motivated by recent experiments in one-dimensional (1D) electron channels written on the LaAlO3/SrTiO3 interface, we analyze how the presence of different forms of spin-orbit coupling (SOC) can enhance electron pairing in 1D waveguides. We first show how the intrinsic Rashba SOC felt by electrons at interfaces such as LaAlO3/SrTiO3 can be reduced when they are confined in one dimension. Then, we discuss how SOC can be engineered, and show using a mean-field Hartree-Fock-Bogoliubov model that SOC can generate and enhance spin-singlet and -triplet electron pairing. Our results are con...
A general form of the Hamiltonian for electrons confined to a curved one-dimensional (1D) channel wi...
Over the past decades there has been a growing interest in the study of the spin-orbit interaction (...
International audienceThe recent development in the fabrication of artificial oxide heterostructures...
Understanding and controlling the transport properties of interacting fermions is a key forefront in...
Understanding and controlling the transport properties of interacting fermions is a key forefront in...
Semiconductor heterostructures1 and ultracold neutral atomic lattices2 capture many of the essential...
The discovery of two-dimensional electron gases (2DEGs) at oxide interfaces-involving electrons in n...
In this thesis we describe experiments which explore 1D transport at the LaAlO3/SrTiO3 interface. C...
The paradigm of electrons interacting with a periodic lattice potential is central to solid-state ph...
We report the control of Rashba spin-orbit interaction by tuning asymmetric hybridization between Ti...
We study one-dimensional structures that may be formed at the LaAlO3/SrTiO3 oxide interface by suita...
The interface between the two complex oxides LaAlO3 and SrTiO3 has remarkable properties that can be...
The recent development in the fabrication of artificial oxide heterostructures opens new avenues in ...
The realization of interfaces between different transition metal oxides has heralded a new era of ma...
Two-dimensional SrTiO3-based interfaces stand out among non-centrosymmetric superconductors due to t...
A general form of the Hamiltonian for electrons confined to a curved one-dimensional (1D) channel wi...
Over the past decades there has been a growing interest in the study of the spin-orbit interaction (...
International audienceThe recent development in the fabrication of artificial oxide heterostructures...
Understanding and controlling the transport properties of interacting fermions is a key forefront in...
Understanding and controlling the transport properties of interacting fermions is a key forefront in...
Semiconductor heterostructures1 and ultracold neutral atomic lattices2 capture many of the essential...
The discovery of two-dimensional electron gases (2DEGs) at oxide interfaces-involving electrons in n...
In this thesis we describe experiments which explore 1D transport at the LaAlO3/SrTiO3 interface. C...
The paradigm of electrons interacting with a periodic lattice potential is central to solid-state ph...
We report the control of Rashba spin-orbit interaction by tuning asymmetric hybridization between Ti...
We study one-dimensional structures that may be formed at the LaAlO3/SrTiO3 oxide interface by suita...
The interface between the two complex oxides LaAlO3 and SrTiO3 has remarkable properties that can be...
The recent development in the fabrication of artificial oxide heterostructures opens new avenues in ...
The realization of interfaces between different transition metal oxides has heralded a new era of ma...
Two-dimensional SrTiO3-based interfaces stand out among non-centrosymmetric superconductors due to t...
A general form of the Hamiltonian for electrons confined to a curved one-dimensional (1D) channel wi...
Over the past decades there has been a growing interest in the study of the spin-orbit interaction (...
International audienceThe recent development in the fabrication of artificial oxide heterostructures...