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Self-duality and Jordan structure of quantum theory follow from homogeneity and pure transitivity

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arxiv 2306.00362 v1 pith:5EP3AKSP submitted 2023-06-01 quant-ph math-phmath.MP

classification quant-phmath-phmath.MP
keywords quantumhomogeneityself-dualitystatetransitivityjordan-algebraicpurecone
verification ladder T0 review T1 audit T2 compute T3 formal
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Among the many important geometric properties of quantum state space are: transitivity of the group of symmetries of the cone of unnormalized states on its interior (homogeneity), identification of this cone with its dual cone of effects via an inner product (self-duality), and transitivity of the group of symmetries of the normalized state space on the pure normalized states (pure transitivity). Koecher and Vinberg showed that homogeneity and self-duality characterize Jordan-algebraic state spaces: real, complex and quaternionic quantum theory, spin factors, 3-dimensional octonionic quantum state space and direct sums of these irreducible spaces. We show that self-duality follows from homogeneity and pure transitivity. These properties have a more direct physical and information-processing significance than self-duality. We show for instance (extending results of Barnum, Gaebeler, and Wilce) that homogeneity is closely related to the ability to steer quantum states. Our alternative to the Koecher-Vinberg theorem characterizes nearly the same set of state spaces: direct sums of isomorphic Jordan-algebraic ones, which may be viewed as composites of a classical system with an irreducible Jordan-algebraic one. There are various physically and informationally natural additional postulates that are known to single out complex quantum theory from among these Jordan-algebraic possibilities. We give various such reconstructions based on the additional property of local tomography.

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Cited by 2 Pith papers

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  1. Information Thermodynamics in Generalized Probabilistic Theories

    quant-ph 2026-05 unverdicted novelty 7.0 of 10

    In GPTs, the second law of information thermodynamics holds whenever a subadditive entropy is nondecreasing under measurement, and explicit square/hexagon GPT cycles extract positive work when that condition fails.

  2. Intersubjectivity as a principle determining physical observables and non-classicality

    quant-ph 2026-03 conditional novelty 6.0 of 10

    A measurement is a PVM if and only if it is completely intersubjective — it and every outcome-coarse-graining guarantee identical outcomes for all observers — and this gap-free property exactly characterizes classical...

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