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Decoherence and the transition from quantum to classical -- REVISITED
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The environment surrounding a quantum system can, in effect, monitor some of the systems observables. As a result, the eigenstates of these observables continuously decohere and can behave like classical states.
Forward citations
Cited by 4 Pith papers
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Correlated decoherence in a common environment activated by relative motion
Relative motion between two boundary subsystems in a common structured environment opens a correlated-decoherence channel only above a kinematic threshold v > 2u_ϕ set by the boundary-mode dispersion.
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Optimal Planning and Machine Learning for Responsive Tracking and Enhanced Forecasting of Wildfires using a Spacecraft Constellation
The abstract and full text are two different papers: the abstract claims a CYGNSS wildfire tracking pipeline, the body is a trapped-ion wave-interference study, so the claimed results are unsupported.
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Interference Between Electromagnetic and Mechanical Waves
A trapped-ion qubit can mediate constructive or destructive interference between a phonon coherent state and a laser drive, enabling controllable transparency of an ion chain to propagating phonon pulses.
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Microscopic QED origin of spin entanglement
Starting from QED scattering, the paper derives dipolar spin interactions for two qubits and claims a distance-to-the-fourth-power effective interaction between two bath spins mediated by a virtual fermion.
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