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Parity-to-charge conversion in Majorana qubit readout
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We study the time-dependent effect of Markovian readout processes on Majorana qubits whose parity degrees of freedom are converted into the charge of a tunnel-coupled quantum dot. By applying a recently established effective Lindbladian approximation [1-3], we obtain a completely positive and trace preserving Lindblad master equation for the combined dot-qubit dynamics, describing relaxation and decoherence processes beyond the rotating-wave approximation. This approach is applicable to a wide range of weakly coupled environments representing experimentally relevant readout devices. We study in detail the case of thermal decay in the presence of a generic Ohmic bosonic bath, in particular for potential fluctuations in an electromagnetic circuit. In addition, we consider the nonequilibrium measurement environment for a parity readout using a quantum point contact capacitively coupled to the dot charge.
Forward citations
Cited by 2 Pith papers
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Distinct Lifetimes for $X$ and $Z$ Loop Measurements in a Majorana Tetron Device
A tetron device shows X and Z parity loops switching at 14.5 microseconds and 12.4 milliseconds, with assignment errors of 16% and 0.5%.
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Parity-to-charge conversion for readout of topological Majorana qubits
In Rabi-oscillation parity readout of a Kitaev chain, the readout error is leakage proportional to (u/Delta) squared plus charge noise proportional to (sigma/u) squared plus phonon relaxation proportional to u squared...
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