26 citations · 26 across the 2 of their papers we have counts for
6 papers
Controlling topological phases of matter with quantum light
Olesia Dmytruk, Marco Schirò
Controlling the topological properties of quantum matter is a major goal of condensed matter physics. A major effort in this direction has been devoted to using classical light in…
Gauge Fixing for Strongly Correlated Electrons coupled to Quantum Light
Olesia Dmytruk, Marco Schiró
We discuss the problem of gauge fixing for strongly correlated electrons coupled to quantum light, described by projected low-energy models such as those obtained within tight-bind…
Pinning of Andreev bound states to zero energy in two-dimensional superconductor-semiconductor Rashba heterostructures
Olesia Dmytruk, Daniel Loss, Jelena Klinovaja
We consider a two-dimensional electron gas with Rashba spin-orbit interaction (SOI) partially covered by an s-wave superconductor, where the uncovered region remains normal but is…
Majorana Bound States in Double Nanowires with Reduced Zeeman Thresholds due to Supercurrents
Olesia Dmytruk, Manisha Thakurathi, Daniel Loss +1
We study the topological phase diagram of a setup composed of two nanowires with strong Rashba spin-orbit interaction subjected to an external magnetic field and brought into the p…
Zero-energy Andreev bound states from quantum dots in proximitized Rashba nanowires
Christopher Reeg, Olesia Dmytruk, Denis Chevallier +2
We study an analytical model of a Rashba nanowire that is partially covered by and coupled to a thin superconducting layer, where the uncovered region of the nanowire forms a quant…
Renormalization of quantum dot -factor in superconducting Rashba nanowires
Olesia Dmytruk, Denis Chevallier, Daniel Loss +1
We study analytically and numerically the renormalization of the -factor in semiconducting Rashba nanowires (NWs), consisting of a normal and superconducting section. If the pot…