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Quantum Mechanics Without State Vectors

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arxiv 1405.3483 v1 pith:RWCJBYFV submitted 2014-05-14 quant-ph

Quantum Mechanics Without State Vectors

classification quant-ph
keywords physicalstatedensitydescriptionmatrixmechanicsquantumstates
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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It is proposed to give up the description of physical states in terms of ensembles of state vectors with various probabilities, relying instead solely on the density matrix as the description of reality. With this definition of a physical state, even in entangled states nothing that is done in one isolated system can instantaneously effect the physical state of a distant isolated system. This change in the description of physical states opens up a large variety of new ways that the density matrix may transform under various symmetries, different from the unitary transformations of ordinary quantum mechanics. Such new transformation properties have been explored before, but so far only for the symmetry of time translations into the future, treated as a semi-group. Here new transformation properties are studied for general symmetry transformations forming groups, rather than semi-groups. Arguments are given that such symmetries should act on the density matrix as in ordinary quantum mechanics, but loopholes are found for all of these arguments.

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Cited by 1 Pith paper

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score.

  1. Quantum and Classical mechanics vs QFT

    physics.gen-ph 2026-02 reject novelty 4.0

    Planck's constant is proposed as an emergent order parameter, making quantum mechanics the bridge between quantum field theory and classical mechanics.