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Respecting One's Fellow: QBism's Analysis of Wigner's Friend

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arxiv 2008.03572 v1 pith:FET72DZN submitted 2020-08-08 quant-ph

Respecting One's Fellow: QBism's Analysis of Wigner's Friend

classification quant-ph
keywords wignerfriendagentquantumotherqbismagentsmeasurement
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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According to QBism, quantum states, unitary evolutions, and measurement operators are all understood as personal judgments of the agent using the formalism. Meanwhile, quantum measurement outcomes are understood as the personal experiences of the same agent. Wigner's conundrum of the friend, in which two agents ostensibly have different accounts of whether or not there is a measurement outcome, thus poses no paradox for QBism. Indeed the resolution of Wigner's original thought experiment was central to the development of QBist thinking. The focus of this paper concerns two very instructive modifications to Wigner's puzzle: One, a recent no-go theorem by Frauchiger and Renner, and the other a thought experiment by Baumann and Brukner. We show that the paradoxical features emphasized in these works disappear once both friend and Wigner are understood as agents on an equal footing with regard to their individual uses of quantum theory. Wigner's action on his friend then becomes, from the friend's perspective, an action the friend takes on Wigner. Our analysis rests on a kind of quantum Copernican principle: When two agents take actions on each other, each agent has a dual role as a physical system for the other agent. No user of quantum theory is more privileged than any other. In contrast to the sentiment of Wigner's original paper, neither agent should be considered as in "suspended animation." In this light, QBism brings an entirely new perspective to understanding Wigner's friend thought experiments.

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  1. Adlam's Frame: comment on "Wigner's Frame"

    quant-ph 2026-07 conditional novelty 6.0

    Quantum reference frames do not evade the Wigner's-friend no-go theorems: the proposed resolution alters quantum theory and measures a substituted observable, not the friend's outcome.