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Quantum Measurement and Initial Conditions
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Quantum measurement finds the observed system in a collapsed state, rather than in the state predicted by the Schr\"odinger equation. Yet there is a relatively spread opinion that the wavefunction collapse can be explained by unitary evolution (for instance in the decoherence approach, if we take into account the environment). In this article it is proven a mathematical result which severely restricts the initial conditions for which measurements have definite outcomes, if pure unitary evolution is assumed. This no-go theorem remains true even if we take the environment into account. The result does not forbid a unitary description of the measurement process, it only shows that such a description is possible only for very restricted initial conditions. The existence of such restrictions of the initial conditions can be understood in the four-dimensional block universe perspective, as a requirement of global self-consistency of the solutions of the Schr\"odinger equation.
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Observation as Physication. A single-world unitary no-conspiracy interpretation of quantum mechanics
A proposed interpretation of quantum mechanics, physication, assigns the physical meaning of operators through observation so that measurements have definite outcomes while the state evolves unitarily in a single world.
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