A non-Hermitian loop for a quantum measurement
Here we present a non-Hermitian framework for modeling state-vector collapse under unified dynamics described by Schrödinger’s equation. Under the premise of non-Hermitian Hamiltonian dynamics, we argue that collapse has to occur when the Hamiltonian ...
Luis E F Foa Torres, Stephan Roche
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Observing Quantum Measurement Collapse as a Learnability Phase Transition
During a quantum measurement, superpositions of states with different observable properties probabilistically collapse into one with a sharp value of the measured observable.
Utkarsh Agrawal +4 more
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Quantum Collapse and Computation in an Everett Multiverse. [PDF]
Tamburini F, Licata I.
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Quantum-Inspired and Non-Classical Approaches to Consciousness: Models, Evidence and Constraints. [PDF]
Arias-Carrión O +2 more
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Quantum theories of consciousness: a critical review of feasibility, philosophical sufficiency, and empirical testability. [PDF]
Ma X, Wang A.
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The theory of psychic quanta: a quantum model for the unity of individual consciousness. [PDF]
Tallarico A.
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A Simple Understanding of Quantum Electrodynamics Using Bohmian Trajectories: Detecting Non-Ontic Photons. [PDF]
Seoane JJ, Benali A, Oriols X.
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The Statistical-Mechanical Meaning of the Wave Function of Quantum Mechanics. [PDF]
Robledo A.
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Bridging the gap in silicon photonics: quantum dot lasers and the end of the optical isolator. [PDF]
Pan S, Yang J, Chen S.
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Self-referential processing as the biological switch between classical and quantum functioning of the brain. [PDF]
Roeloffs J, Tuszynski JA.
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