arXiv · 1610.06208
A Loomis-Sikorski theorem and functional calculus for a generalized Hermitian algebra
Abstract
A generalized Hermitian (GH-) algebra is a generalization of the partially ordered Jordan algebra of all Hermitian operators on a Hilbert space. We introduce the notion of a gh-tribe, which is a commutative GH-algebra of functions on a nonempty set $X$ with pointwise partial order and operations, and we prove that every commutative GH-algebra is the image of a gh-tribe under a surjective GH-morphism. Using this result, we prove each element $a$ of a GH-algebra $A$ corresponds to a real observable $\xi_a$ on the $\sigma$-orthomodular lattice of projections in $A$ and that $\xi_a$ determines the spectral resolution of $a$. Also, if $f$ is a continuous function defined on the spectrum of $a$, we formulate a definition of $f(a)$, thus obtaining a continuous functional calculus for $A$.
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David J. Foulis, Anna Jencova, Sylvia Pulmannova. 2016-10-18. A Loomis-Sikorski theorem and functional calculus for a generalized Hermitian algebra. https://doi.org/10.1016/s0034-4877(17)30079-4
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