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Making Sense of Non-Individuals in Quantum Mechanics

In Olimpia Lombardi, Sebastian Fortin, Cristian López & Frederico Holik (eds.), Quantum Worlds. Different Perspectives about the ontology of quantum mechanics. Cambridge University Press (forthcoming)

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  1. Discerning Fermions.Simon Saunders & F. A. Muller - 2008 - British Journal for the Philosophy of Science 59 (3):499 - 548.
    We demonstrate that the quantum-mechanical description of composite physical systems of an arbitrary number of similar fermions in all their admissible states, mixed or pure, for all finite-dimensional Hilbert spaces, is not in conflict with Leibniz's Principle of the Identity of Indiscernibles (PII). We discern the fermions by means of physically meaningful, permutation-invariant categorical relations, i.e. relations independent of the quantum-mechanical probabilities. If, indeed, probabilistic relations are permitted as well, we argue that similar bosons can also be discerned in all (...)
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  • Identity in physics: a historical, philosophical, and formal analysis.Steven French & Decio Krause - 2006 - New York: Oxford University Press. Edited by Decio Krause.
    Steven French and Decio Krause examine the metaphysical foundations of quantum physics. They draw together historical, logical, and philosophical perspectives on the fundamental nature of quantum particles and offer new insights on a range of important issues. Focusing on the concepts of identity and individuality, the authors explore two alternative metaphysical views; according to one, quantum particles are no different from books, tables, and people in this respect; according to the other, they most certainly are. Each view comes with certain (...)
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  • Individuation.Edward Jonathan Lowe - 2003 - In Michael J. Loux & Dean W. Zimmerman (eds.), The Oxford handbook of metaphysics. New York: Oxford University Press.
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  • Introduction to mathematical logic.Alonzo Church - 1944 - Princeton,: Princeton University Press. Edited by C. Truesdell.
    This book is intended to be used as a textbook by students of mathematics, and also within limitations as a reference work.
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  • Introduction to mathematical logic..Alonzo Church - 1944 - Princeton,: Princeton university press: London, H. Milford, Oxford university press. Edited by C. Truesdell.
    This book is intended to be used as a textbook by students of mathematics, and also within limitations as a reference work.
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  • Introduction to Mathematical Logic.S. C. Kleene - 1956 - Journal of Symbolic Logic 23 (3):362-362.
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  • Contributions to the Founding of the Theory of Transfinite Numbers.Cassius J. Keyser - 1916 - The Monist 26:638.
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  • The received view on quantum non-individuality: formal and metaphysical analysis.Jonas Rafael Becker Arenhart - 2017 - Synthese 194 (4).
    The Received View on quantum non-individuality is, roughly speaking, the view according to which quantum objects are not individuals. It seems clear that the RV finds its standard expression nowadays through the use of the formal apparatuses of non-reflexive logics, mainly quasi-set theory. In such logics, the relation of identity is restricted, so that it does not apply for terms denoting quantum particles; this “lack of identity” formally characterizes their non-individuality. We face then a dilemma: on the one hand, identity (...)
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  • On sense and reference.Gottlob Frege - 2010 - In Darragh Byrne & Max Kölbel (eds.), Arguing about language. New York: Routledge. pp. 36--56.
    Equality1 gives rise to challenging questions which are not altogether easy to answer. Is it a relation? A relation between objects, or between names or signs of objects? In my Begriffsschrift I assumed the latter. The reasons which seem to favour this are the following: a = a and a = b are obviously statements of differing cognitive value; a = a holds a priori and, according to Kant, is to be labeled analytic, while statements of the form a = (...)
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  • Conceptual Foundations of Quantum Field Theory.Tian Yu Cao (ed.) - 1999 - Cambridge University Press.
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  • Does Newtonian Space Provide Identity to Quantum Systems?Décio Krause - 2019 - Foundations of Science 24 (2):197-215.
    Physics is not just mathematics. This seems trivial, but poses difficult and interesting questions. In this paper we analyse a particular discrepancy between non-relativistic quantum mechanics and ‘classical’ space and time. We also suggest, but not discuss, the case of the relativistic QM. In this work, we are more concerned with the notion of space and its mathematical representation. The mathematics entails that any two spatially separated objects are necessarily different, which implies that they are discernible —we say that the (...)
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  • Quine's new foundations.Thomas Forster - 1985 - Journal of Symbolic Logic.
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  • Q-spaces and the Foundations of Quantum Mechanics.Graciela Domenech, Federico Holik & Décio Krause - 2008 - Foundations of Physics 38 (11):969-994.
    Our aim in this paper is to take quite seriously Heinz Post’s claim that the non-individuality and the indiscernibility of quantum objects should be introduced right at the start, and not made a posteriori by introducing symmetry conditions. Using a different mathematical framework, namely, quasi-set theory, we avoid working within a label-tensor-product-vector-space-formalism, to use Redhead and Teller’s words, and get a more intuitive way of dealing with the formalism of quantum mechanics, although the underlying logic should be modified. We build (...)
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  • Longing for the Harmonies Themes and Variations From Modern Physi.Frank Wilczek & Betsy Devine - 1989 - W. W. Norton & Company.
    "Occasionally, there comes along a popular science book that both scientists and non-scientist can read with pleasure and profit, and this is one."—The New Yorker Devoted to sharing their own delight and awe before the fundamental mysteries of the cosmos, Frank Wilczek (winner of the 2004 Nobel Prize in Physics) and science writer Betsy Devine also have a serious purpose: to reveal to the lay reader how a heightened perception can respond to timeless themes of the physical universe. For example, (...)
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  • Compositionality.Zoltán Gendler Szabó - 2008 - Stanford Encyclopedia of Philosophy.
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  • Philosophical Explanations. [REVIEW]Robert Nozick - 1981 - Philosophy 58 (223):118-121.
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  • Quantum mechanics and haecceities.Paul Teller - 1998 - In Elena Castellani (ed.), Interpreting Bodies. Princeton University Press. pp. 114--141.
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  • Why Identity is Fundamental.Otávio Bueno - 2014 - American Philosophical Quarterly 51 (4):325-332.
    Identity is arguably one of the most fundamental concepts in metaphysics. There are several reasons why this is the case: Identity is presupposed in every conceptual system: without identity, it is unclear that any conceptual system can be formulated. Identity is required to characterize an individual: nothing can be an individual unless it has well-specified identity conditions. Identity cannot be defined: even in systems that allegedly have the resources to define identity. Identity is required for quantification: the intelligibility of quantification (...)
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  • Non-individuals.E. J. Lowe - 2016 - In Thomas Pradeu & Alexandre Guay (eds.), Individuals Across the Sciences. Oxford University Press.
    An individual, as this term will be understood here, is an entity to which the concepts of unity and identity fully and determinately apply. That is to say, an entity x is an individual just in case x determinately counts as one entity and x has a determinate identity. Many philosophers tacitly assume that all entities are individuals in the foregoing sense, and indeed that it is a necessary truth that they are. But this can certainly be disputed. It is, (...)
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  • ontributions to the Founding of the Theory of Transfinite Numbers. [REVIEW]Georg Cantor - 1916 - Ancient Philosophy (Misc) 26:638.
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  • Philosophical Explanations.Robert Nozick - 1981 - Mind 93 (371):450-455.
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  • What is an elementary particle?Erwin Schrödinger - 1950 - Annual Report of the Board of Regents of The Smithsonian Institution:183-196.
    Schrödinger discusses what an elementary particle is. This essay originally appeared in the journal Endeavour.
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  • Conceptual Foundations of Quantum Field Theory.Tian Yu Cao - 2002 - Journal for General Philosophy of Science / Zeitschrift für Allgemeine Wissenschaftstheorie 33 (1):174-181.
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