Results for 'Nonlocal influence'

989 found
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  1. Nonlocal Influences and Possible Worlds—A Stapp in the Wrong Direction.Robert K. Clifton, Jeremy N. Butterfield & Michael L. G. Redhead - 1990 - British Journal for the Philosophy of Science 41 (1):5-58.
    give a proof of the existence of nonlocal influences acting on correlated spin-1/2 particles in the singlet state which does not require any particular interpretation of quantum mechanics (QM). (Except Stapp holds that the proof fails under a many-worlds interpretation of QM—a claim we analyse in 1.2.) Recently, in responding to Redhead's ([1987], pp. 90-6) criticism that the Stapp 1 proof fails under an indeterministic interpretation of QM, Stapp [1989] (henceforth Stapp 2), has revised the logical structure of his (...)
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  2.  61
    Comments on 'nonlocal influences and possible worlds'.Henry P. Stapp - 1990 - British Journal for the Philosophy of Science 41 (1):59-72.
    Clifton, Butterfield, and Redhead [1989] have constructed two separate arguments that bear some resemblances to a proof of mine pertaining to the nonlocal character of quantum theory. Their arguments have flaws, which they point out. I explicate my proof by explaining in detail both how it differs logically from the two arguments they have constructed, and how it avoids the pitfalls of both. *This work was supported by the Director, Office of Energy Research, Office of High Energy and Nuclear (...)
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  3.  80
    Proof of a quantum mechanical nonlocal influence.C. W. Rietdijk & F. Selleri - 1985 - Foundations of Physics 15 (3):303-317.
    First it is proved that, in a deterministic theory, Malus' law requires that, if a photon is successively transmitted by two polarizers with appropriately chosen settings, the first transmission influences a hidden variable (co-) determining the second one. We derive from this that in an ideal EPR experiment (giving the result predicted by quantum mechanics for two correlated photons transmitted by two polarizers with suitably chosen settings) there has to be a nonlocal influence from the “first” transmission interaction (...)
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  4.  32
    Nonlocal Quantum Information Transfer Without Superluminal Signalling and Communication.Jan Walleczek & Gerhard Grössing - 2016 - Foundations of Physics 46 (9):1208-1228.
    It is a frequent assumption that—via superluminal information transfers—superluminal signals capable of enabling communication are necessarily exchanged in any quantum theory that posits hidden superluminal influences. However, does the presence of hidden superluminal influences automatically imply superluminal signalling and communication? The non-signalling theorem mediates the apparent conflict between quantum mechanics and the theory of special relativity. However, as a ‘no-go’ theorem there exist two opposing interpretations of the non-signalling constraint: foundational and operational. Concerning Bell’s theorem, we argue that Bell employed (...)
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  5. Nonlocal “Realistic” Leggett Models Can be Considered Refuted by the Before-Before Experiment.Antoine Suarez - 2008 - Foundations of Physics 38 (6):583-589.
    Nonlocal “realistic” Leggett models can be considered refuted by the before-before experiment. “Single preferred frame” models are not refuted by this experiment but bear severe oddities.
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  6.  83
    Quantum nonlocality.Henry P. Stapp - 1988 - Foundations of Physics 18 (4):427-448.
    It is argued that the validity of the predictions of quantum theory in certain spincorrelation experiments entails a violation of Einstein's locality idea that no causal influence can act outside the forward light cone. First, two preliminary arguments suggesting such a violation are reviewed. They both depend, in intermediate stages, on the idea that the results of certain unperformed experiments are physically determinate. The second argument is entangled also with the problem of the meaning of “physical reality.” A new (...)
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  7.  82
    Nonlocal character of the Rastall model.Donald Bedford & Henry P. Stapp - 1989 - Foundations of Physics 19 (4):397-406.
    The discussion of whether quantum theory is compatible with the locality idea that no causal influence can act outside the forward light cone has recently been tightly linked to the corresponding question for a much simpler model theory that enjoys all of the pertinent properties of quantum theory but is much easier to fully comprehend. It is shown here that, contrary to recent claims, the model theory is incompatible with the locality idea mentioned above. The logical structure of the (...)
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  8. Comment on: Nonlocal “Realistic” Leggett Models Can be Considered Refuted by the Before-Before Experiment.Marek Żukowski - 2008 - Foundations of Physics 38 (11):1070-1071.
    It is shown here that Suarez (Found. Phys. 38:583, 2008) wrongly presents the assumptions behind the Leggett’s inequalities, and their modified form used by Groeblacher et al. (Nature 446:871, 2007) for an experimental falsification of a certain class of non-local hidden variable models.
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  9.  15
    About a “Nonlocal” Local Model Considered by L. Vervoort, and the Necessity to Distinguish Locality from Einstein Locality.I. Schmelzer - 2017 - Foundations of Physics 47 (1):113-116.
    L. Vervoort claims to have found a model which “can violate the Bell inequality and reproduce the quantum statistics, even if it is based on local dynamics only”. This claim is false. The proposed model contains global elements. The physics behind the model is local, but would not allow the explanation of violations of Bell inequalities for space-like separated events, if superluminal causal influences are forbidden. To use it for this purpose, one has to introduce a preferred frame where information (...)
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  10. Retrodiction in quantum mechanics, preferred Lorentz frames, and nonlocal measurements.O. Cohen & B. J. Hiley - 1995 - Foundations of Physics 25 (12):1669-1698.
    We examine, in the context of the Einstein-Podolsky-Rosen-Bohm gedankenexperiment, problems associated with state reduction and with nonlocal influences according to different interpretations of quantum mechanics, when attempts are made to apply these interpretations in the relativistic domain. We begin by considering the significance of retrodiction within four different interpretations of quantum mechanics, and show that three of these interpretations, if applied in a relativistic context, can lead to ambiguities in their description of a process. We consider ways of dealing (...)
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  11. EPR-Bohr-Bell and Nonlocality.Henry Stapp - unknown
    "Indeed I have very little idea of what this means. I do not understand in what sense the word `mechanical' is used, in characterizing the disturbances that Bohr does not contemplate, as distinct from those he does. I do not know what the italicized passage means--- `an influence on the very conditions...' . Could it mean just that different experiments on the first system give different kinds of information about the second? But this was one of the main points (...)
     
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  12. Opposite arrows of time can reconcile relativity and nonlocality.Sheldon Goldstein - manuscript
    We present a quantum model for the motion of N point particles, implying nonlocal (i.e., superluminal) influences of external fields on the trajectories, that is nonetheless fully relativistic. In contrast to other models that have been proposed, this one involves no additional space-time structure as would be provided by a (possibly dynamical) foliation of space-time. This is achieved through the interplay of opposite microcausal and macrocausal (i.e., thermodynamic) arrows of time. PACS numbers 03.65.Ud; 03.65.Ta; 03.30.+p..
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  13.  20
    Would Superluminal Influences Violate the Principle of Relativity?Kent Peacock - 2014 - Lato Sensu: Revue de la Société de Philosophie des Sciences 1 (1):49-62.
    It continues to be alleged that superluminal in uences of any sort would be inconsistent with special relativity for the following three reasons: they would imply the existence of a ‘distinguished’ frame; they would allow the detection of absolute motion; and they would violate the relativity of simultaneity. This paper shows that the first two objections rest upon very elementary misunderstandings of Minkowski geometry and on lingering Newtonian intuitions about instantaneity. The third objection has a basis, but rather than invalidating (...)
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  14. Strong Constraints on Models that Explain the Violation of Bell Inequalities with Hidden Superluminal Influences.Valerio Scarani, Jean-Daniel Bancal, Antoine Suarez & Nicolas Gisin - 2014 - Foundations of Physics 44 (5):523-531.
    We discuss models that attempt to provide an explanation for the violation of Bell inequalities at a distance in terms of hidden influences. These models reproduce the quantum correlations in most situations, but are restricted to produce local correlations in some configurations. The argument presented in (Bancal et al. Nat Phys 8:867, 2012) applies to all of these models, which can thus be proved to allow for faster-than-light communication. In other words, the signalling character of these models cannot remain hidden.
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  15. Quantum Locality.Robert B. Griffiths - 2011 - Foundations of Physics 41 (4):705-733.
    It is argued that while quantum mechanics contains nonlocal or entangled states, the instantaneous or nonlocal influences sometimes thought to be present due to violations of Bell inequalities in fact arise from mistaken attempts to apply classical concepts and introduce probabilities in a manner inconsistent with the Hilbert space structure of standard quantum mechanics. Instead, Einstein locality is a valid quantum principle: objective properties of individual quantum systems do not change when something is done to another noninteracting system. (...)
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  16. Possible Worlds-A Stapp in the Wrong Direction'(joint paper with RK Clifton and J. Butterfield).Non-Local Influences - 1990 - British Journal for the Philosophy of Science 41:5-58.
  17. Quantum Locality?Henry P. Stapp - 2012 - Foundations of Physics 42 (5):647-655.
    Robert Griffiths has recently addressed, within the framework of a ‘consistent quantum theory’ that he has developed, the issue of whether, as is often claimed, quantum mechanics entails a need for faster-than-light transfers of information over long distances. He argues that the putative proofs of this property that involve hidden variables include in their premises some essentially classical-physics-type assumptions that are not entailed by the precepts of quantum mechanics. Thus whatever is proved is not a feature of quantum mechanics, but (...)
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  18. From implexity to perplexity - entanglement in quantum theory.Jean-Michel Delhotel - unknown
    An essential feature of the quantum mechanical formalism, entanglement is widely thought to imply nonlocality or nonseparability as a puzzling trait of our ‘quantum world’. The notion of entanglement is reviewed and the question is addressed of whether invoking nonlocal influences, or perhaps time-reversed causation, is warranted in such ‘applications’ as quantum teleportation and entanglement swapping.
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  19. Locality and Bell's Theorem.W. De Baere, A. Mann & M. Revzen - 1999 - Foundations of Physics 29 (1):67-77.
    It is shown that the violation of Bell's inequality allowed by quantum mechanics and the related Bell's theorem without inequalities is accounted for by local commutations of operators representing single-particle observables. It is argued that the idea of nonlocal influencing of one particle on another when they are in spacelike separated regions clearly has neither empirical nor theoretical support.
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  20. On Bell, Suarez-Scarani, and Leggett Experiments: Reply to a Comment by Marek Żukowski in [Found. Phys. 38:1070, 2008].Antoine Suarez - 2009 - Foundations of Physics 39 (2):156-159.
    It is shown that the before-before (or Suarez-Scarani) experiment refutes hidden variable models with a deterministic (“realistic”) nonlocal part, whereas experiments violating Leggett-type inequalities refute models with biased random local part. Therefore the claim that Gröblacher et al. (Nature 446:871–875, 2007) present “an experimental test of nonlocal realism” is misleading, and Marek Żukowski’s (Found. Phys. 38:1070, 2008) comment misses the point. A new experiment is suggested.
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  21. Quantum Counterfactuals and Locality.Robert B. Griffiths - 2012 - Foundations of Physics 42 (5):674-684.
    Stapp’s counterfactual argument for quantum nonlocality based upon a Hardy entangled state is shown to be flawed. While he has correctly analyzed a particular framework using the method of consistent histories, there are alternative frameworks which do not support his argument. The framework dependence of quantum counterfactual arguments, with analogs in classical counterfactuals, vitiates the claim that nonlocal (superluminal) influences exist in the quantum world. Instead it shows that counterfactual arguments are of limited use for analyzing these questions.
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  22.  93
    Isolation, not locality.Heather Demarest & Michael Townsen Hicks - 2020 - Philosophy and Phenomenological Research 103 (3):607-619.
    There is a long tradition of preferring local theories to ones that posit lawful or causal influence at a spacetime distance. In this paper, we argue against this preference. We argue that nonlocality is scientifically unobjectionable and that nonlocal theories can be known. Scientists can gather evidence for them and confirm them in much the same way that they do for local theories. We think these observations point to a deeper constraint on scientific theorizing and experimentation: the (quasi‐) (...)
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  23. On the Consequences of Retaining the General Validity of Locality in Physical Theory.W. De Baere - 2005 - Foundations of Physics 35 (1):33-56.
    The empirical validity of the locality (LOC) principle of relativity is used to argue in favour of a local hidden variable theory (HVT) for individual quantum processes. It is shown that such a HVT may reproduce the statistical predictions of quantum mechanics (QM), provided the reproducibility of initial hidden variable states is limited. This means that in a HVT limits should be set to the validity of the notion of counterfactual definiteness (CFD). This is supported by the empirical evidence that (...)
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  24.  93
    Locality, Bell's theorem, and quantum mechanics.Peter Rastall - 1985 - Foundations of Physics 15 (9):963-972.
    Classical relativistic physics assumes that spatially separated events cannot influence one another (“locality”) and that values may be assigned to quantities independently of whether or not they are actually measured (“realism”). These assumptions have consequences—the Bell inequalities—that are sometimes in disagreement with experiment and with the predictions of quantum mechanics. It has been argued that, even if realism is not assumed, the violation of the Bell inequalities implies nonlocality—and hence that radical changes are necessary in the foundations of physics. (...)
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  25.  31
    Is value conflict inherent in rural economic development? An exploratory examination of unrecognized choices.Peter B. Meyer & Michael Burayidi - 1991 - Agriculture and Human Values 8 (3):10-18.
    Rural development and economic change has generally been associated with growth and the in-migration of nonlocal firms or their branch plants and offices. Such change has been critiqued and at times resisted because of its implicit “urbanism” and conflict with rural values and modes of social interaction. The inevitability of the conflict has always been assumed, given the perspectives of development groups and many rural residents. This paper examines the apparent conflicts between the rural ethos and the “growth ethos,” (...)
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  26.  24
    My Discussions of Quantum Foundations with John Stewart Bell.Marian Kupczynski - forthcoming - Foundations of Science:1-20.
    In 1976, I met John Bell several times in CERN and we talked about a possible violation of optical theorem, purity tests, EPR paradox, Bell’s inequalities and their violation. In this review, I resume our discussions, and explain how they were related to my earlier research. I also reproduce handwritten notes, which I gave to Bell during our first meeting and a handwritten letter he sent to me in 1982. We have never met again, but I have continued to discuss (...)
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  27. Locality, localization, and the particle concept: Topics in the foundations of quantum field theory.Hans Halvorson - 2001 - Dissertation, University of Pittsburgh
    This dissertation reconsiders some traditional issues in the foundations of quantum mechanics in the context of relativistic quantum field theory (RQFT); and it considers some novel foundational issues that arise first in the context of RQFT. The first part of the dissertation considers quantum nonlocality in RQFT. Here I show that the generic state of RQFT displays Bell correlations relative to measurements performed in any pair of spacelike separated regions, no matter how distant. I also show that local systems in (...)
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  28.  85
    Dear Walter, My article ``Whiteheadian Process and Quantum Theory of Mind'' was the first `Target Article' on the e Forum.Henry P. Stapp - unknown
    There is already in quantum theory the huge *fact* of the apparent nonlocal (faster than light) connections: if one rejects the many worlds notion that all things happen [and I believe that that idea must be rejected for technical reasons --but that is a whole long argument itself] then there is an absolute need for some sort of FTL transfer of information. There simply must be a strong interconnectedness of the universe: FTL influence is unavoidable in quantum theory, (...)
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  29.  88
    Wigner trajectories of a Gaussian wave packet perturbed by a weak potential.Hai-Woong Lee - 1992 - Foundations of Physics 22 (8):995-1010.
    Trajectories along which phase-space points of the Wigner distribution function move are computed for a Gaussian wave packet moving under the influence of a weak perturbative potential. The potentials considered are a potential step, a potential barrier, and a periodic potential. Trajectories computed exhibit the complex, nonlocal nature of quantum dynamics. It is seen that quantum interference, which takes place in the time development of the wave packet, is taken care of in a simple way by the Wigner (...)
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  30.  28
    Nonrelativistic Quantum Mechanics with Fundamental Environment.Ashot S. Gevorkyan - 2011 - Foundations of Physics 41 (3):509-515.
    Spontaneous transitions between bound states of an atomic system, “Lamb Shift” of energy levels and many other phenomena in real nonrelativistic quantum systems are connected within the influence of the quantum vacuum fluctuations (fundamental environment (FE)) which are impossible to consider in the limits of standard quantum-mechanical approaches. The joint system “quantum system (QS) + FE” is described in the framework of the stochastic differential equation (SDE) of Langevin-Schrödinger (L-Sch) type, and is defined on the extended space R 3 (...)
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  31.  73
    Bell's theorem, inference, and quantum transactions.A. J. M. Garrett - 1990 - Foundations of Physics 20 (4):381-402.
    Bell's theorem is expounded as an analysis in Bayesian inference. Assuming the result of a spin measurement on a particle is governed by a causal variable internal (hidden, “local”) to the particle, one learns about it by making a spin measurement; thence about the internal variable of a second particle correlated with the first; and from there predicts the probabilistic result of spin measurements on the second particle. Such predictions are violated by experiment: locality/causality fails. The statistical nature of the (...)
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  32. Incompleteness, Nonlocality, and Realism: A Prolegomenon to the Philosophy of Quantum Mechanics.Michael Redhead - 1987 - New York: Oxford University Press.
    Aiming to unravel the mystery of quantum mechanics, this book is concerned with questions about action-at-a-distance, holism, and whether quantum mechanics gives a complete account of microphysical reality. With rigorous arguments and clear thinking, the author provides an introduction to the philosophy of physics.
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  33. Nonlocality Without Nonlocality.Steven Weinstein - 2009 - Foundations of Physics 39 (8):921-936.
    Bell’s theorem is purported to demonstrate the impossibility of a local “hidden variable” theory underpinning quantum mechanics. It relies on the well-known assumption of ‘locality’, and also on a little-examined assumption called ‘statistical independence’ (SI). Violations of this assumption have variously been thought to suggest “backward causation”, a “conspiracy” on the part of nature, or the denial of “free will”. It will be shown here that these are spurious worries, and that denial of SI simply implies nonlocal correlation between (...)
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  34. Quantum nonlocality as an axiom.Sandu Popescu & Daniel Rohrlich - 1994 - Foundations of Physics 24 (3):379-385.
    In the conventional approach to quantum mechanics, indeterminism is an axiom and nonlocality is a theorem. We consider inverting the logical order, making nonlocality an axiom and indeterminism a theorem. Nonlocal “superquantum” correlations, preserving relativistic causality, can violate the CHSH inequality more strongly than any quantum correlations.
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  35. Nonlocality and the aharonov-Bohm effect.Richard Healey - 1997 - Philosophy of Science 64 (1):18-41.
    At first sight the Aharonov- Bohm effect appears nonlocal, though not in the way EPR/Bell correlations are generally acknowledged to be nonlocal. This paper applies an analysis of nonlocality to the Aharonov- Bohm effect to show that its peculiarities may be blamed either on a failure of a principle of local action or on a failure of a principle of separability. Different interpretations of quantum mechanics disagree on how blame should be allocated. The parallel between the Aharonov- Bohm (...)
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  36. Nonlocality and the Kochen-Specker paradox.Peter Heywood & Michael L. G. Redhead - 1983 - Foundations of Physics 13 (5):481-499.
    A new proof of the impossibility of reconciling realism and locality in quantum mechanics is given. Unlike proofs based on Bell's inequality, the present work makes minimal and transparent use of probability theory and proceeds by demonstrating a Kochen-Specker type of paradox based on the value assignments to the spin components of two spatially separated spin-1 systems in the singlet state of their total spin. An essential part of the argument is to distinguish carefully two commonly confused types of contextuality; (...)
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  37.  57
    Nonlocality and the Epistemic Interpretation of Quantum Mechanics.Yemima Ben-Menahem - unknown
    According to the current epistemic interpretation of quantum probabilities, the quantum correlations manifesting nonlocality can be derived from purely probabilistic and information-theoretic constraints. As such, they do not constitute a spacetime phenomenon and cannot lead to conflict between QM and any spatial-temporal constraints. This paper compares recent epistemic interpretations with earlier probabilistic interpretations, noting their merits as well as the difficulties they encounter. In particular, the implications of the recent PBR theorem are examined. While generally seen as undermining the epistemic (...)
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  38.  88
    Nonlocal character of quantum theory?N. David Mermin - 1998 - American Journal of Physics 66:920.
    In a recent article under the above title (but without the question mark) Henry Stapp has presented arguments which lead him to conclude that under suitable conditions “the truth of a statement that refers only to phenomena confined to an earlier time” must “depend on which measurement an experimenter freely chooses to perform at a later time.” I suggest that this conclusion contains an essential ambiguity as regards the meaning of the expression “statement referring only to phenomena confined to an (...)
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  39. Nonlocal Hidden-Variable Theories and Quantum Mechanics: An Incompatibility Theorem. [REVIEW]A. J. Leggett - 2003 - Foundations of Physics 33 (10):1469-1493.
    It is argued that among possible nonlocal hidden-variable theories a particular class (called here “crypto-nonlocal” or CN) is relatively plausible on physical grounds. CN theories have the property that (for example) the two photons emitted in an atomic cascade process are indistinguishable in their individual statistical properties from photons emitted singly, and that in the latter case the effects of nonlocality are unobservable. It is demonstrated that all CN theories are constrained by inequalities which are violated by the (...)
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  40. Quantum nonlocality and the challenge to scientific realism.Christopher Norris - 2000 - Foundations of Science 5 (1):3-45.
    In this essay I examine various aspects of the nearcentury-long debate concerning the conceptualfoundations of quantum mechanics and the problems ithas posed for physicists and philosophers fromEinstein to the present. Most crucial here is theissue of realism and the question whether quantumtheory is compatible with any kind of realist orcausal-explanatory account which goes beyond theempirical-predictive data. This was Einstein's chiefconcern in the famous series of exchanges with NielsBohr when he refused to accept the truth orcompleteness of a doctrine (orthodox QM) (...)
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  41.  79
    Nonlocality and Gleason's lemma. Part 2. Stochastic theories.Andrew Elby - 1990 - Foundations of Physics 20 (11):1389-1397.
    I derive a Gleason-type contradiction from assumptions weaker than those needed to reach a Bell inequality. By establishing the inconsistency between local realism and QM's perfect EPR-type anticorrelations, the proof fills in a gap left open by Bell arguments.
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  42.  68
    Nonlocality and Gleason's lemma. Part I. Deterministic theories.H. R. Brown & G. Svetlichny - 1990 - Foundations of Physics 20 (11):1379-1387.
    J. S. Bell's classic 1966 review paper on the foundations of quantum mechanics led directly to the Bell nonlocality theorem. It is not widely appreciated that the review paper contained the basic ingredients needed for a nonlocality result which holds in certain situations where the Bell inequality is not violated. We present in this paper a systematic formulation and evaluation of an argument due to Stairs in 1983, which establishes a nonlocality result based on the Bell-Kochen-Specker “paradox” in quantum mechanics.
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  43.  30
    Nonlocal Reaction–Diffusion Equations in Biomedical Applications.V. Volpert, O. Udovenko, M. Kuznetsov & M. Banerjee - 2022 - Acta Biotheoretica 70 (2):1-28.
    Nonlocal reaction–diffusion equations describe various biological and biomedical applications. Their mathematical properties are essentially different in comparison with the local equations, and this difference can lead to important biological implications. This review will present the state of the art in the investigation of nonlocal reaction–diffusion models in biomedical applications. We will consider various models arising in mathematical immunology, neuroscience, cancer modelling, and we will discuss their mathematical properties, nonlinear dynamics, resulting spatiotemporal patterns and biological significance.
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  44. Nonlocality in the Many-Worlds and Consistent-Histories Interpretations.R. L. Schafir - 1998 - Foundations of Physics 28 (2):157-166.
    The many-worlds interpretation has usually been regarded as immune to nonlocality, and similar claims have been made for the consistent-histories interpretation (1-3). However, for a thought experiment of the Hardy type, the argument for nonlocality in the usual interpretation can be extended to both these other interpretations.
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  45.  27
    Quantum Nonlocality and Reality: 50 Years of Bell's Theorem.Mary Bell & Shan Gao (eds.) - 2016 - Cambridge University Press.
    A collaboration between distinguished physicists and philosophers of physics, this important anthology surveys the deep implications of Bell's nonlocality theorem.
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  46. Quantum Nonlocality and the Possibility of Superluminal Effects.John G. Cramer - unknown
    EPR experiments demonstrate that standard quantum mechanics exhibits the property of nonlocality , the enforcement of correlations between separated parts of an entangled quantum systems across spacelike separations. Nonlocality will be clarified using the transactional interpretation of quantum mechanics, and the possibility of superluminal effects (e.g., faster-than-light communication) from nonlocality and non-linear quantum mechanics will be examined.
     
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  47.  46
    Nonlocality, local indeterminism and consciousness.David Hodgson - 1996 - Ratio 9 (1):1-22.
    In this paper, I argue that a satisfactory account of consciousness will involve both (1) local indeterminism, in that some relevant events are not wholly and unequivocally pre‐determined by immediately prior local events, and (2) nonlocality, in that, within the leeways left by local indeterminism, what happens can be immediately affected by spatially separated or extended events. I briefly consider if this can be avoided by treating consciousness as supervenient and epiphenomenal; and I suggest that current theories of consciousness break (...)
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  48. Nonlocality Is a Nonsequitur.David Atkinson - unknown
    Nonlocality in quantum mechanics does not follow from nonseparability, nor does classical stochastic independence imply physical independence. In this paper an explicit proof of a Bell inequality is recalled, and an analysis of the Aspect experiment in terms of noncontextual, but indefinite weights, or improper probabilities, is given.
     
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  49.  75
    Locality, Nonlocality and Action at a Distance: A Skeptical Review of Some Philosophical Dogmas.John Earman - 1987 - In .
  50.  76
    The nonlocality of mind.Christopher J. S. Clarke - 1995 - Journal of Consciousness Studies 2 (3):231-40.
    The dominance in normal awareness of visual percepts, which are linked to space, obscures the fact that most thoughts are non-spatial. It is argued that the mind is intrinsically non-spatial, though in perception can become compresent with spatial things derived from outside the mind. The assumption that the brain is entirely spatial is also challenged, on the grounds that there is a perfectly good place for the non-spatial in physics. A quantum logic approach to physics, which takes non-locality as its (...)
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