Quantum walk on a circle in phase space via superconducting circuit quantum electrodynamics
ORAL
Abstract
We show how a quantum walk, with a single walker and controllable decoherence, can be implemented for the first time in a quantum quincunx created via superconducting circuit quantum electrodynamics (QED). Two resonators are employed to provide simultaneously fast readout and controllable decoherence over a wide range of parameters. The Hadamard coin flip is achieved by directly driving the cavity, with the result that the walker jumps between circles in phase space but still exhibits quantum walk behavior over 15 steps.
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Authors
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Barry C. Sanders
IQIS, University of Calgary, University of Calgary, Institute for Quantum Information Science, University of Calgary
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Peng Xue
University of Calgary
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A. Blais
University of Sherbrooke, Departement de Physique, Universite de Sherbrooke
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Kevin Lalumiere
University of Sherbrooke