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October 5, 20250 citationsOpen Access

Realism and the Inequivalence of the Two Quantum Pictures

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CBCharles Alexandre Bédard

Key Points

  • The Schrödinger and Heisenberg pictures of quantum mechanics yield the same predictions, but are fundamentally different.
  • Descriptors in the Heisenberg picture do not reduce to the wave function in the Schrödinger picture, indicating they are non-isomorphic.
  • This inequivalence opens new avenues for understanding quantum phenomena, like superdense coding and Bell inequalities.
  • Under a realist perspective, these differences highlight the need for a more comprehensive understanding of quantum theory's ontology.

Abstract

The standard claim that the Schrödinger and Heisenberg pictures of quantum mechanics are equivalent rests on the fact that they yield identical empirical predictions. This equivalence therefore assumes the instrumentalist worldview in which theories serve only as tools for prediction. Under scientific realism, by contrast, theories aim to describe reality. Whereas the Schrödinger picture posits a time-evolving wave function, the Heisenberg picture posits so-called descriptors, time-evolving generators of the algebra of observables. These two structures are non-isomorphic: descriptors surject onto but do not reduce to the Schrödinger state. Hence, under realism, the pictures are inequivalent. I argue that this inequivalence marks an opening toward a richer, separable ontology for quantum theory. On explanatory grounds, descriptors provide genuinely local accounts of superdense coding, teleportation, branching, and Bell inequality violations -- phenomena that the Schrödinger framework does not explain fully locally.

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Cite This Study

Charles Alexandre Bédard (2025) studied this question.

synapsesocial.com/papers/68e25559d6d66a53c2474ffdhttps://doi.org/10.48550/arxiv.2510.02138
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