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The Quantum Field Theory on Which the Everyday World Supervenes

In Meir Hemmo, Stavros Ioannidis, Orly Shenker & Gal Vishne, Levels of Reality in Science and Philosophy: Re-Examining the Multi-Level Structure of Reality. Springer. pp. 27-46 (2022)

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  1. What Emergence Can Possibly Mean.Sean M. Carroll & Achyuth Parola - manuscript
    We consider emergence from the perspective of dynamics: states of a system evolving with time. We focus on the role of a decomposition of wholes into parts, and attempt to characterize relationships between levels without reference to whether higher-level properties are “novel” or “unexpected.” We offer a classification of different varieties of emergence, with and without new ontological elements at higher levels. -/- Submitted to a volume on Real Patterns (Tyler Milhouse, ed.), to be published by MIT Press.
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  • Reality as a Vector in Hilbert Space.Sean M. Carroll - 2022 - In Valia Allori, Quantum Mechanics and Fundamentality: Naturalizing Quantum Theory between Scientific Realism and Ontological Indeterminacy. Cham: Springer. pp. 211-224.
    I defend the extremist position that the fundamental ontology of the world consists of a vector in Hilbert space evolving according to the Schrödinger equation. The laws of physics are determined solely by the energy eigenspectrum of the Hamiltonian. The structure of our observed world, including space and fields living within it, should arise as a higher-level emergent description. I sketch how this might come about, although much work remains to be done.
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  • Biological Emergence: a Key Exemplar of the Open Systems View.George F. R. Ellis - forthcoming - In Michael E. Cuffaro & Stephan Hartmann, Open Systems: Physics, Metaphysics, and Methodology (2025: Oxford University Press). Oxford: Oxford University Press.
    The context for biological emergence is modular hierarchical structures; their existence is what enables functional complexity to arise. Because of the openness of organisms to their environment, complete initial data (position, momentum) of all particles making up their structure is insufficient to determine future outcomes, because unpredictable new matter, energy, and information impacts each organism from the exterior. Consequently, through Darwinian evolution, life has developed processes to handle this issue functionally on short time scales as well on longer developmental timescales. (...)
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