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- W3147789810 abstract "Quantum dot based parity-to-charge conversion is a promising method for reading out quantum information encoded nonlocally into pairs of Majorana zero modes. To obtain a sizable parity-to-charge visibility, it is crucial to tune the relative phase of the tunnel couplings between the dot and the Majorana modes appropriately. However, in the presence of multiple quasidegenerate dot orbitals, it is in general not experimentally feasible to tune all couplings individually. This paper shows that such configurations could make it difficult to avoid a destructive multiorbital interference effect that substantially reduces the readout visibility. We analyze this effect using a Lindblad quantum master equation. This exposes how the experimentally relevant system parameters enhance or suppress the visibility when strong charging energy, measurement dissipation, and, most importantly, multiorbital interference is accounted for. In particular, we find that an intermediate-time readout could mitigate some of the interference-related visibility reductions affecting the stationary limit." @default.
- W3147789810 created "2021-04-13" @default.
- W3147789810 creator A5007831198 @default.
- W3147789810 creator A5024715806 @default.
- W3147789810 creator A5041248873 @default.
- W3147789810 creator A5077926476 @default.
- W3147789810 date "2021-06-03" @default.
- W3147789810 modified "2023-09-27" @default.
- W3147789810 title "Multilevel effects in quantum dot based parity-to-charge conversion of Majorana box qubits" @default.
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- W3147789810 doi "https://doi.org/10.1103/physrevb.103.245407" @default.
- W3147789810 hasPublicationYear "2021" @default.
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