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arxiv: 1512.04413 · v1 · pith:OMNEBDN4new · submitted 2015-12-14 · ❄️ cond-mat.quant-gas · cond-mat.str-el· quant-ph

Dissipative topological superconductors in number-conserving systems

classification ❄️ cond-mat.quant-gas cond-mat.str-elquant-ph
keywords number-conservingp-wavedissipativeladderpropertiessinglesuperconductorssystems
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We discuss the dissipative preparation of p-wave superconductors in number-conserving one-dimensional fermionic systems. We focus on two setups: the first one entails a single wire coupled to a bath, whereas in the second one the environment is connected to a two-leg ladder. Both settings lead to stationary states which feature the bulk properties of a p-wave superconductor, identified in this number-conserving setting through the long-distance behavior of the proper p-wave correlations. The two schemes differ in the fact that the steady state of the single wire is not characterized by topological order, whereas the two-leg ladder hosts Majorana zero modes, which are decoupled from damping and exponentially localized at the edges. Our analytical results are complemented by an extensive numerical study of the steady-state properties, of the asymptotic decay rate and of the robustness of the protocols.

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