Publication | Open Access
Towards Quantum Superpositions of a Mirror: An Exact Open Systems Analysis
67
Citations
17
References
2005
Year
EngineeringCoherenceMeasurement ProblemQuantum ComputingState Vector CollapseQuantum Mechanical PropertyQuantum TheoryQuantum EntanglementQuantum MatterQuantum SciencePhysicsFringe VisibilityInverse ProblemsMirror Superposition ExperimentQuantum DecoherenceNatural SciencesQuantum SystemTowards Quantum SuperpositionsCoherent ProcessWave Interference
We analyze the recently proposed mirror superposition experiment of Marshall, Simon, Penrose, and Bouwmeester, assuming that the mirror's dynamics contains a nonunitary term of the Lindblad-type proportional to -[q,[q,rho]], with q the position operator for the center of mass of the mirror, and rho the statistical operator. We derive an exact formula for the fringe visibility for this system. We discuss the consequences of our result for tests of environmental decoherence and of collapse models. In particular, we find that with the conventional parameters for the continuous spontaneous localization model of state vector collapse, maintenance of coherence is expected to within an accuracy of at least 1 part in 10(8). Increasing the apparatus coupling to environmental decoherence may lead to observable modifications of the fringe visibility, with time dependence given by our exact result.
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