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Louis Vervoort
Université du Québec à Montreal
  1. Superdeterminism: a reappraisal.Giacomo Andreoletti & Louis Vervoort - 2022 - Synthese 200 (5):1-20.
    This paper addresses a particular interpretation of quantum mechanics, i.e. superdeterminism. In short, superdeterminism i) takes the world to be fundamentally deterministic, ii) postulates hidden variables, and iii) contra Bell, saves locality at the cost of violating the principle of statistical independence. Superdeterminism currently enjoys little support in the physics and philosophy communities. Many take it to posit the ubiquitous occurrence of hard-to-digest conspiratorial and coincidental events; others object that violating the principle of statistical independence implies the death of the (...)
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  2. Macroscopic oil droplets mimicking quantum behavior: How far can we push an analogy?Louis Vervoort & Yves Gingras - manuscript
    We describe here a series of experimental analogies between fluid mechanics and quantum mechanics recently discovered by a team of physicists. These analogies arise in droplet systems guided by a surface (or pilot) wave. We argue that these experimental facts put ancient theoretical work by Madelung on the analogy between fluid and quantum mechanics into new light. After re-deriving Madelung’s result starting from two basic fluid-mechanical equations (the Navier-Stokes equation and the continuity equation), we discuss the relation with the de (...)
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  3. Free will and (in)determinism in the brain: a case for naturalized philosophy.Louis Vervoort & Tomasz Blusiewicz - manuscript
    In this article we study the question of free will from an interdisciplinary angle, drawing on philosophy, neurobiology and physics. We start by reviewing relevant neurobiological findings on the functioning of the brain, notably as presented in (Koch 2009); we assess these against the physics of (in)determinism. These biophysics findings seem to indicate that neuronal processes are not quantum but classical in nature. We conclude from this that there is little support for the existence of an immaterial ‘mind’, capable of (...)
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  4. The concept of probability in physics: an analytic version of von Mises’ interpretation.Louis Vervoort - manuscript
    In the following we will investigate whether von Mises’ frequency interpretation of probability can be modified to make it philosophically acceptable. We will reject certain elements of von Mises’ theory, but retain others. In the interpretation we propose we do not use von Mises’ often criticized ‘infinite collectives’ but we retain two essential claims of his interpretation, stating that probability can only be defined for events that can be repeated in similar conditions, and that exhibit frequency stabilization. The central idea (...)
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  5. The CMT Model of Free Will.Louis Vervoort & Tomasz Blusiewicz - manuscript
    Here we propose a compatibilist theory of free will, in the tradition of naturalized philosophy, that attempts: 1) to provide a synthesis of a variety of well-known theories, capable of addressing problems of the latter; 2) to account for the fact that free will comes in degrees; 3) to interface with natural sciences, especially neurobiology. We argue that free will comes in degrees, as suggested by neuroscience. We suggest that a concept that can precisely ‘measure’ the variability of free will (...)
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  6. Environmental Human Rights : Urgency for a Concrete Formulation.Louis Vervoort - manuscript
    In the present article, I will evaluate the utility of environmental human rights in the light of the global climate conditions prevailing in the beginning of the second decade of the 21st century. Human rights and their tools have proven useful on many occasions. Here I will promote the idea that the ecological situation we are facing now is so urgent that we should exploit their potential to the fullest. To that end, I will argue, there is a clear need (...)
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  7. The Manipulability Account of Causation applied to Physical Systems.Louis Vervoort - 2014
    In the following we will apply the manipulability theory of causation of Woodward 2003 to physical systems, and show that, in the latter context, the theory can be simplified. Elaborating on an argument by Cartwright, we will argue that the notions of ‘modularity’ and ‘intervention’ of the cited work should be adapted for typical physical systems, in order to take coupling of system equations into account. We will show that this allows to reduce all cause types discussed in Woodward 2003 (...)
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  8. Does chance hide necessity ? A reevaluation of the debate ‘determinism - indeterminism’ in the light of quantum mechanics and probability theory.Louis Vervoort - 2013 - Dissertation, University of Montreal
    In this text the ancient philosophical question of determinism (“Does every event have a cause ?”) will be re-examined. In the philosophy of science and physics communities the orthodox position states that the physical world is indeterministic: quantum events would have no causes but happen by irreducible chance. Arguably the clearest theorem that leads to this conclusion is Bell’s theorem. The commonly accepted ‘solution’ to the theorem is ‘indeterminism’, in agreement with the Copenhagen interpretation. Here it is recalled that indeterminism (...)
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