Is mereology empirical? : composition for fermions

In Tomasz Bigaj & Christian Wüthrich, Metaphysics in Contemporary Physics. Boston: Brill | Rodopi (2015)
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Abstract

How best to think about quantum systems under permutation invariance is a question that has received a great deal of attention in the literature. But very little attention has been paid to taking seriously the proposal that permutation invariance reflects a representational redundancy in the formalism. Under such a proposal, it is far from obvious how a constituent quantum system is represented. Consequently, it is also far from obvious how quantum systems compose to form assemblies, i.e. what is the formal structure of their relations of parthood, overlap and fusion. In this paper, I explore one proposal for the case of fermions and their assemblies. According to this proposal, fermionic assemblies which are not entangled—in some heterodox, but natural sense of ‘entangled’—provide a prima facie counterexample to classical mereology. This result is puzzling; but, I argue, no more intolerable than any other available interpretative option.

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Adam Caulton
Oxford University

Citations of this work

Interpreting Quantum Entanglement: Steps towards Coherentist Quantum Mechanics.Matteo Morganti & Claudio Calosi - 2021 - British Journal for the Philosophy of Science 72 (3):865-891.
Ordinary objects.Daniel Z. Korman & Jonathan Barker - 2025 - Stanford Encyclopedia of Philosophy.
Identity and individuality in quantum theory.Steven French - 2008 - Stanford Encyclopedia of Philosophy.
‘How Do Things Persist.Thomas Pashby - 2016 - Dialectica 70 (3):269-309.

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References found in this work

The calculus of individuals and its uses.Henry S. Leonard & Nelson Goodman - 1940 - Journal of Symbolic Logic 5 (2):45-55.
Quantum physics and the identity of indiscernibles.Steven French & Michael Redhead - 1988 - British Journal for the Philosophy of Science 39 (2):233-246.
Entanglement and non-factorizability.James A. C. Ladyman, Oystein Linnebo & Tomasz F. Bigaj - 2013 - Studies in History and Philosophy of Science Part B: Studies in History and Philosophy of Modern Physics 44 (3):215-221.

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