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Open Quantum Systems Decoherence
Quantum Simulation
Multi-Qubit Joint Measurements in Circuit QED: Stochastic Master Equation Analysis
arXiv
Authors: Ben Criger, Alessandro Ciani, David P. DiVincenzo
Year
2015
Paper ID
26755
Status
Preprint
Abstract Read
~2 min
Abstract Words
111
Citations
N/A
Abstract
We derive a family of stochastic master equations describing homodyne measurement of multi-qubit diagonal observables in circuit quantum electrodynamics. In the regime where qubit decay can be neglected, our approach replaces the polaron-like transformation of previous work, which required a lengthy calculation for the physically interesting case of three qubits and two resonator modes. The technique introduced here makes this calculation straightforward and manifestly correct. Using this technique, we are able to show that registers larger than one qubit evolve under a non-Markovian master equation. We perform numerical simulations of the three-qubit, two-mode case from previous work, obtaining an average post-measurement state fidelity of sim 94\%, limited by measurement-induced decoherence and dephasing.
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- This paper contributes to the Quantum Simulation research area in the Quantum Articles archive.
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- We derive a family of stochastic master equations describing homodyne measurement of multi-qubit diagonal observables in circuit quantum electrodynamics.
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