Physical Review Letters · 2006 · 45 citations · 14 references
We propose a new way to generate an observable geometric phase by means of a completely incoherent phenomenon. We show how to imprint a geometric phase to a system by adiabatically manipulating the environment with which it interacts. As a specific scheme, we analyze a multilevel atom interacting with a broadband squeezed vacuum bosonic bath. As the squeezing parameters are smoothly changed in time along a closed loop, the ground state of the system acquires a geometric phase. We also propose a scheme to measure such a geometric phase by means of a suitable polarization detection.
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Phase change during a cyclic quantum evolution
Yakir Aharonov, J. Anandan · Physical Review Letters · 1987 · 2.1K citations
Cyclic Quantum Evolution, Quantum Science, Cyclic Evolution +13
Decoherence-Free Subspaces for Quantum Computation
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Geometric quantum computation using nuclear magnetic resonance
Jonathan A. Jones, Vlatko Vedral, Artur Ekert et al. · Nature · 2000 · 803 citations · Full text