Results for 'Collapse models'

981 found
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  1.  56
    Are Collapse Models Testable via Flavor Oscillations?Sandro Donadi, Angelo Bassi, Catalina Curceanu, Antonio Di Domenico & Beatrix C. Hiesmayr - 2013 - Foundations of Physics 43 (7):813-844.
    Collapse models predict the spontaneous collapse of the wave function, in order to avoid the emergence of macroscopic superpositions. In their mass-dependent formulation, they claim that the collapse of any system’s wave function depends on its mass. Neutral K, D, B mesons are oscillating systems that are given by Nature as superposition of two distinct mass eigenstates. Thus they are unique laboratory for testing collapse models that are sensitive to the mass. In this paper (...)
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  2. Collapse Models:a theoretical, experimental and philosophical review.Mauro Dorato, Angelo Bassi & Hendrik Ulbricht - 2023 - Entropy 25 (645):1.
    In this paper, we review and connect the three essential conditions needed by the collapse model to achieve a complete and exact formulation, namely the theoretical, the experimental, and the ontological ones. These features correspond to the three parts of the paper. In any empirical science, the first two features are obviously connected but, as is well known, among the different formulations and interpretations of non-relativistic quantum mechanics, only collapse models, as the paper well illustrates with a (...)
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  3.  11
    A Proposal for a New Kind of Spontaneous Collapse Model.Nicolò Piccione - 2023 - Foundations of Physics 54 (1):1-24.
    Spontaneous collapse models are modifications of standard quantum mechanics in which a physical mechanism is responsible for the collapse of the wavefunction, thus providing a way to solve the so-called “measurement problem”. The two most famous of these models are the Ghirardi–Rimini–Weber (GRW) model and the Continuous Spontaneous Localisation (CSL) models. Here, we propose a new kind of non-relativistic spontaneous collapse model based on the idea of collapse points situated at fixed spacetime coordinates. (...)
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  4.  29
    Axioms for finite collapse models of arithmetic.Andrew Tedder - 2015 - Review of Symbolic Logic 8 (3):529-539.
    The collapse models of arithmetic are inconsistent, nontrivial models obtained from ℕ and set out in the Logic of Paradox (LP). They are given a general treatment by Priest (Priest, 2000). Finite collapse models are decidable, and thus axiomatizable, because finite. LP, however, is ill-suited to normal axiomatic reasoning, as it invalidates Modus Ponens, and almost all other usual conditional inferences. I set out a logic, A3, first given by Avron (Avron, 1991), and give a (...)
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  5.  35
    Consequence for Wavefunction Collapse Model of the Sudbury Neutrino Observatory Experiment.Gordon Jones, Philip Pearle & James Ring - 2004 - Foundations of Physics 34 (10):1467-1474.
    It is shown that data on the dissociation rate of deuterium obtained in an experiment at the Sudbury Neutrino Observatory provides evidence that the Continuous Spontaneous Localization wavefunction collapse model should have mass–proportional coupling to be viable.
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  6.  21
    Time Reversal Symmetry and Collapse Models.D. J. Bedingham & O. J. E. Maroney - 2017 - Foundations of Physics 47 (5):670-696.
    Dynamical collapse models embody the idea of a physical collapse of the wave function in a mathematically well-defined way. They involve modifications to the standard rules of quantum theory in order to describe collapse as a physical process. This appears to introduce a time reversal asymmetry into the dynamics since the state at any given time depends on collapses in the past but not in the future. Here we challenge this conclusion by demonstrating that, subject to (...)
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  7.  51
    Constraint on collapse models by limit on spontaneous x-ray emission in Ge.Brian Collett, Philip Pearle, Frank Avignone & Shmuel Nussinov - 1995 - Foundations of Physics 25 (10):1399-1412.
    The continuous spontaneous localization (CSL) model modifies Schrödinger's equation so that the collapse of the state vector is described as a physical process (a special interaction of particles with a universal fluctuating field). A consequence of the model is that an electron in an atom should occasionally get “spontaneously” knocked out of the atom. The CSL ionization rate for the 1s electrons in the Ge atom is calculated and compared with an experimental upper limit for the rate of “spontaneously” (...)
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  8.  5
    The CSL Collapse Model and Spontaneous Radiation: An Update.Frank T. Avignone, Juan I. Collar, James Ring & Philip Pearle - 1999 - Foundations of Physics 29 (3):465-480.
    A brief review is given of the continuous spontaneous localization (CSL) model, in which a classical field interacts with quantized particles to cause dynamical wavefunction collapse. One of the model's predictions is that particles “spontaneously” gain energy at a slow rate. When applied to the excitation of a nucleon in a Ge nucleus, it is shown how a limit on the relative collapse rates of neutron and proton can be obtained, and a rough estimate is made from data. (...)
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  9.  85
    The CSL collapse model and spontaneous radiation: an update.Philip Pearle, James Ring, Juan I. Collar & Frank T. Avignone Iii - 1999 - Foundations of Physics 29 (3):465-480.
  10. A consciousness-based quantum objective collapse model.Elias Okon & Miguel Ángel Sebastián - 2020 - Synthese 197 (9):3947-3967.
    Ever since the early days of quantum mechanics it has been suggested that consciousness could be linked to the collapse of the wave function. However, no detailed account of such an interplay is usually provided. In this paper we present an objective collapse model where the collapse operator depends on integrated information, which has been argued to measure consciousness. By doing so, we construct an empirically adequate scheme in which superpositions of conscious states are dynamically suppressed. Unlike (...)
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  11.  55
    The CSL Collapse Model and Spontaneous Radiation: An Update. [REVIEW]Philip Pearle, James Ring, Juan I. Collar & I. I. I. Avignone - 1999 - Foundations of Physics 29 (3):465-480.
    A brief review is given of the continuous spontaneous localization (CSL) model, in which a classical field interacts with quantized particles to cause dynamical wavefunction collapse. One of the model's predictions is that particles “spontaneously” gain energy at a slow rate. When applied to the excitation of a nucleon in a Ge nucleus, it is shown how a limit on the relative collapse rates of neutron and proton can be obtained, and a rough estimate is made from data. (...)
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  12.  81
    Gravity, energy conservation, and parameter values in collapse models.Philip Pearle & Euan Squires - 1996 - Foundations of Physics 26 (3):291-305.
    We interpret the probability rule of the CSL collapse theory to mean to mean that the scalar field which causes collapse is the gravitational curvature scalar with two sources, the expectation value of the mass density (smeared over the GRW scale a) and a white noise fluctuating source. We examine two models of the fluctuating source, monopole fluctuations and dipole fluctuations, and show that these correspond to two well-known CSL models. We relate the two GRW parameters (...)
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  13.  8
    Temporal Global Correlations in Time-Symmetric Collapse Models.Pascal Rodríguez-Warnier - 2023 - Foundations of Physics 53 (3):1-15.
    It has been recently argued that by Leifer and Pusey, and Price, that time-symmetric quantum mechanics must entail retrocausality. Adlam responds that such theories might also entail ‘spooky action at a distance’. This paper proposes a third alternative: time-symmetric quantum mechanics might entail temporal global correlations. Unlike the traditional analysis of time symmetries in quantum mechanics, which consider linear and unitary interpretations, this paper considers the time-symmetric collapse models advanced by Bedingham and Maroney. These models are specially (...)
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  14.  12
    New Insights on the Quantum-Classical Division in Light of Collapse Models.Fernanda Torres, Sujoy K. Modak & Alfredo Aranda - 2023 - Foundations of Physics 53 (4):1-11.
    We argue, in light of Collapse Model interpretation of quantum theory, that the fundamental division between the quantum and classical behaviors might be analogous to the division of thermodynamic phases. A specific relationship between the collapse parameter $$(\lambda )$$ and the collapse length scale ( $$r_C$$ ) plays the role of the coexistence curve in usual thermodynamic phase diagrams. We further claim that our functional relationship between $$\lambda$$ and $$r_C$$ is strongly supported by the existing International Germanium (...)
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  15.  83
    Symmetric versions of explicit wavefunction collapse models.Chris Dove & Evan J. Squires - 1995 - Foundations of Physics 25 (9):1267-1282.
    Two versions of the GRW “hitting” model for explicit wavefunction collapse, which are consistent with preserving the symmetry of the wavefunction, are considered. The predictions of the models for excitation of bound systems are calculated and compared with experiment and with the predictions of other similar models. It is shown that our preferred model strongly supports the idea that collapse, if it occurs, has gravitational origin.
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  16.  11
    Connecting the Dots: Mott for Emulsions, Collapse Models, Colored Noise, Frame Dependence of Measurements, Evasion of the “Free Will Theorem”.Stephen L. Adler - 2018 - Foundations of Physics 48 (11):1557-1567.
    We review the argument that latent image formation is a measurement in which the state vector collapses, requiring an enhanced noise parameter in objective reduction models. Tentative observation of a residual noise at this level, plus several experimental bounds, imply that the noise must be colored, and hence frame dependent and non-relativistic. Thus a relativistic objective reduction model, even if achievable in principle, would be incompatible with experiment; the best one can do is the non-relativistic CSL model. This negative (...)
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  17. A Model of Wavefunction Collapse in Discrete Space-Time.Shan Gao - 2006 - International Journal of Theoretical Physics 45 (10):1965-1979.
    We give a new argument supporting a gravitational role in quantum collapse. It is demonstrated that the discreteness of space-time, which results from the proper combination of quantum theory and general relativity, may inevitably result in the dynamical collapse of thewave function. Moreover, the minimum size of discrete space-time yields a plausible collapse criterion consistent with experiments. By assuming that the source to collapse the wave function is the inherent random motion of particles described by the (...)
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  18.  24
    Collapse of the Wave Function: Models, Ontology, Origin, and Implications.Shan Gao (ed.) - 2018 - New York, NY: Cambridge University Press.
    An overview of the collapse theories of quantum mechanics. Written by distinguished physicists and philosophers of physics, it discusses the origin and implications of wave-function collapse, the controversies around collapse models and their ontologies, and new arguments for the reality of wave function collapse.
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  19.  10
    A Model of Spontaneous Collapse with Energy Conservation.D. W. Snoke - 2021 - Foundations of Physics 51 (5):1-10.
    A model of spontaneous collapse of fermionic degrees of freedom in a quantum field is presented which has the advantages that it explicitly maintains energy conservation and gives results in agreement with an existing numerical method for calculating quantum state evolution, namely the quantum trajectories model.
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  20.  14
    Characterizing model-theoretic dividing lines via collapse of generalized indiscernibles.Vincent Guingona, Cameron Donnay Hill & Lynn Scow - 2017 - Annals of Pure and Applied Logic 168 (5):1091-1111.
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  21.  30
    Partial collapses of the complexity hierarchy in models for fragments of bounded arithmetic.Zofia Adamowicz & Leszek Aleksander Kołodziejczyk - 2007 - Annals of Pure and Applied Logic 145 (1):91-95.
    For any n, we construct a model of in which each formula is equivalent to an formula.
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  22.  13
    Minimal collapsing extensions of models of zfc.Lev Bukovský & Eva Copláková-Hartová - 1990 - Annals of Pure and Applied Logic 46 (3):265-298.
  23.  28
    Collapsing factors in multitrait-multimethod models: examining consequences of a mismatch between measurement design and model.Christian Geiser, Jacob Bishop & Ginger Lockhart - 2015 - Frontiers in Psychology 6.
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  24.  22
    The weight of collapse: dynamical reduction models in general relativistic contexts.Elias Okon & Daniel Sudarsky - unknown
    Inspired by possible connections between gravity and foundational question in quantum theory, we consider an approach for the adaptation of objective collapse models to a general relativistic context. We apply these ideas to a list of open problems in cosmology and quantum gravity, such as the emergence of seeds of cosmic structure, the black hole information issue, the problem of time in quantum gravity and, in a more speculative manner, to the nature of dark energy and the origin (...)
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  25.  29
    A discrete model of energy-conserved wavefunction collapse.Shan Gao - unknown
    Energy nonconservation is a serious problem of dynamical collapse theories. In this paper, we propose a discrete model of energy-conserved wavefunction collapse. It is shown that the model is consistent with existing experiments and our macroscopic experience.
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  26.  11
    Changing cofinalities and collapsing cardinals in models of set theory.Miloš S. Kurilić - 2003 - Annals of Pure and Applied Logic 120 (1-3):225-236.
    If a˜cardinal κ1, regular in the ground model M, is collapsed in the extension N to a˜cardinal κ0 and its new cofinality, ρ, is less than κ0, then, under some additional assumptions, each cardinal λ>κ1 less than cc/[κ1]<κ1) is collapsed to κ0 as well. If in addition N=M[f], where f : ρ→κ1 is an unbounded mapping, then N is a˜λ=κ0-minimal extension. This and similar results are applied to generalized forcing notions of Bukovský and Namba.
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  27.  47
    Uniqueness, collection, and external collapse of cardinals in ist and models of peano arithmetic.V. Kanovei - 1995 - Journal of Symbolic Logic 60 (1):318-324.
    We prove that in IST, Nelson's internal set theory, the Uniqueness and Collection principles, hold for all (including external) formulas. A corollary of the Collection theorem shows that in IST there are no definable mappings of a set X onto a set Y of greater (not equal) cardinality unless both sets are finite and #(Y) ≤ n #(X) for some standard n. Proofs are based on a rather general technique which may be applied to other nonstandard structures. In particular we (...)
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  28. Wavefunction Collapse and Random Walk.Brian Collett & Philip Pearle - 2003 - Foundations of Physics 33 (10):1495-1541.
    Wavefunction collapse models modify Schrödinger's equation so that it describes the rapid evolution of a superposition of macroscopically distinguishable states to one of them. This provides a phenomenological basis for a physical resolution to the so-called “measurement problem.” Such models have experimentally testable differences from standard quantum theory. The most well developed such model at present is the Continuous Spontaneous Localization (CSL) model in which a universal fluctuating classical field interacts with particles to cause collapse. One (...)
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  29.  59
    Integrated Information-Induced Quantum Collapse.Kobi Kremnizer & André Ranchin - 2015 - Foundations of Physics 45 (8):889-899.
    We present a novel spontaneous collapse model where size is no longer the property of a physical system which determines its rate of collapse. Instead, we argue that the rate of spontaneous localization should depend on a system’s quantum Integrated Information, a novel physical property which describes a system’s capacity to act like a quantum observer. We introduce quantum Integrated Information, present our QII collapse model and briefly explain how it may be experimentally tested against quantum theory.
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  30.  10
    Percolation and collapse of quantum parallelism: a model of qualia and choice.Michael Conrad - 1996 - In S. Hamreoff, Alfred W. Kaszniak & A. C. Scott (eds.), Toward a Science of Consciousness. MIT Press. pp. 469--492.
  31. The Economic Collapse in Two Models of Socio-economic Formation.Grzegorz Tomczak - 1989 - In Leszek Nowak (ed.), Dimensions of the historical process. Amsterdam: Rodopi. pp. 259.
  32.  12
    Remarks on Gitik's model and symmetric extensions on products of the Lévy collapse.Amitayu Banerjee - 2020 - Mathematical Logic Quarterly 66 (3):259-279.
    We improve on results and constructions by Apter, Dimitriou, Gitik, Hayut, Karagila, and Koepke concerning large cardinals, ultrafilters, and cofinalities without the axiom of choice. In particular, we show the consistency of the following statements from certain assumptions: the first supercompact cardinal can be the first uncountable regular cardinal, all successors of regular cardinals are Ramsey, every sequence of stationary sets in is mutually stationary, an infinitary Chang conjecture holds for the cardinals, and all are singular. In each of the (...)
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  33.  50
    The Effect of Spontaneous Collapses on Neutrino Oscillations.Sandro Donadi, Angelo Bassi, Luca Ferialdi & Catalina Curceanu - 2013 - Foundations of Physics 43 (9):1066-1089.
    We compute the effect of collapse models on neutrino oscillations. The effect of the collapse is to modify the evolution of the spatial part of the wave function and we will show that this indirectly amounts to a change on the flavor components. For the analysis we use the mass proportional CSL model, and perform the calculation to second order perturbation theory. As we will show, the CSL effect is very small—mainly due to the very small mass (...)
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  34.  50
    Wavefunction Collapse and Conservation Laws.Philip Pearle - 2000 - Foundations of Physics 30 (8):1145-1160.
    It is emphasized that the collapse postulate of standard quantum theory can violate conservation of energy-momentum and there is no indication from where the energy-momentum comes or to where it goes. Likewise, in the Continuous Spontaneous Localization (CSL) dynamical collapse model, particles gain energy on average. In CSL, the usual Schrödinger dynamics is altered so that a randomly fluctuating classical field interacts with quantized particles to cause wavefunction collapse. In this paper it is shown how to define (...)
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  35.  8
    Objective Collapse Induced by a Macroscopic Object.Arnab Acharya, Pratik Jeware & Soumitro Banerjee - 2023 - Foundations of Physics 53 (4):1-11.
    The collapse of the wavefunction is arguably the least understood process in quantum mechanics. A plethora of ideas—macro-micro divide, many worlds and even consciousness—have been put forth to resolve the issue. Contrary to the standard Copenhagen interpretation, objective collapse models modify the Schrödinger equation with nonlinear and stochastic terms in order to explain the collapse of the wavefunction. In this paper we propose a collapse model in which a particle’s wavefunction has a possibility of collapsing (...)
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  36.  30
    The measurement problem resolved and local realism preserved via a collapse-free photon detection model.Barry C. Gilbert & Sue Sulcs - 1996 - Foundations of Physics 26 (11):1401-1439.
    A new realislic local model of light propagation and detection is described. The authors propose a novel stochastic model of low-intensity photon detection in which background noise is added to a part of the photon prior to absorption. In this model, in agreement with Planck, there is no quantization of the propagating field. The model has some similarities to theories advanced by E. Santos and T. Marshall in the last decade, but also has substantial deviations from these. A mechanism, conserving (...)
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  37.  12
    Umwelt Collapse: The Loss of Umwelt-Ecosystem Integration.Timo Maran - 2023 - Biosemiotics 16 (3):479-487.
    Jakob von Uexküll’s umwelt theory opens new perspectives for understanding animal extinction. The umwelt is interpreted here as a sum of structural correspondences between an animal’s subjective experience, ecosystem, physiology, and behaviour. The global environmental crisis disturbs these meaning-connections. From the umwelt perspective, we may describe extinction as umwelt collapse: The disintegration of an animal’s umwelt resulting from the cumulative errors in semiotic processes that mediate an organism and ecosystem. The loss of umwelt-ecosystem integration disturbs “ecological memory,” which provides (...)
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  38.  53
    The collapse illusion effect: A semantic-pragmatic illusion of truth and paradox.Shira Elqayam - 2006 - Thinking and Reasoning 12 (2):144 – 180.
    Two Experiments demonstrate the existence of a “collapse illusion”, in which reasoners evaluate Truthteller-type propositions (“I am telling the truth”) as if they were simply true, whereas Liar-type propositions (“I am lying”) tend to be evaluated as neither true nor false. The second Experiment also demonstrates an individual differences pattern, in which shallow reasoners are more susceptible to the illusion. The collapse illusion is congruent with philosophical semantic truth theories such as Kripke's (1975), and with hypothetical thinking theory's (...)
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  39.  13
    Easton collapses and a strongly saturated filter.Masahiro Shioya - 2020 - Archive for Mathematical Logic 59 (7-8):1027-1036.
    We introduce the Easton collapse and show that the two-stage iteration of Easton collapses gives a model in which the successor of a regular cardinal carries a strongly saturated filter. This allows one to get a model in which many successor cardinals carry saturated filters just by iterating Easton collapses.
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  40.  28
    Collapse and Measures of Consciousness.Adrian Kent - 2021 - Foundations of Physics 51 (3):1-14.
    There has been an upsurge of interest lately in developing Wigner’s hypothesis that conscious observation causes collapse by exploring dynamical collapse models in which some purportedly quantifiable aspect of consciousness resist superposition. Kremnizer–Ranchin, Chalmers–McQueen and Okon–Sebastián have explored the idea that collapse may be associated with a numerical measure of consciousness. More recently, Chalmers–McQueen have argued that any single measure is inadequate because it will allow superpositions of distinct states of equal consciousness measure to persist. They (...)
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  41.  24
    Gravitational Collapse in Quantum Einstein Gravity.Alfio Bonanno, Benjamin Koch & Alessia Platania - 2018 - Foundations of Physics 48 (10):1393-1406.
    The existence of spacetime singularities is one of the biggest problems of nowadays physics. According to Penrose, each physical singularity should be covered by a “cosmic censor” which prevents any external observer from perceiving their existence. However, classical models describing the gravitational collapse usually results in strong curvature singularities, which can also remain “naked” for a finite amount of advanced time. This proceedings studies the modifications induced by asymptotically safe gravity on the gravitational collapse of generic Vaidya (...)
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  42.  28
    Redundancy in the nervous system: Where internal models collapse.Ramesh Balasubramaniam - 2004 - Behavioral and Brain Sciences 27 (3):396-397.
    Grush has proposed a fairly comprehensive version of the idea of internal models within the framework of the emulation theory of representation. However, the formulation suffers from assumptions that render such models biologically infeasible. Here I present some problems from physiological principles of human movement production to illustrate why. Some alternative views to emulation are presented.
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  43.  63
    The collapse of the Hilbert program: A variation on the gödelian theme.Saul A. Kripke - 2022 - Bulletin of Symbolic Logic 28 (3):413-426.
    The Hilbert program was actually a specific approach for proving consistency, a kind of constructive model theory. Quantifiers were supposed to be replaced by ε-terms. εxA(x) was supposed to denote a witness to ∃xA(x), or something arbitrary if there is none. The Hilbertians claimed that in any proof in a number-theoretic system S, each ε-term can be replaced by a numeral, making each line provable and true. This implies that S must not only be consistent, but also 1-consistent. Here we (...)
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  44.  32
    Collapsing functions.Ernest Schimmerling & Boban Velickovic - 2004 - Mathematical Logic Quarterly 50 (1):3-8.
    We define what it means for a function on ω1 to be a collapsing function for λ and show that if there exists a collapsing function for +, then there is no precipitous ideal on ω1. We show that a collapsing function for ω2 can be added by forcing. We define what it means to be a weakly ω1-Erdös cardinal and show that in L[E], there is a collapsing function for λ iff λ is less than the least weakly ω1-Erdös (...)
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  45.  11
    Predicative collapsing principles.Anton Freund - 2020 - Journal of Symbolic Logic 85 (1):511-530.
    We show that arithmetical transfinite recursion is equivalent to a suitable formalization of the following: For every ordinal \alpha there exists an ordinal /beta such that 1 + \beta \cdot (\beta + \alpha) admits an almost order preserving collapse into \beta. Arithmetical comprehension is equivalent to a statement of the same form, with \beta \cdot \alpha at the place of \beta \cdot (\beta + \alpha). We will also characterise the principles that any set is contained in a countable coded (...)
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  46.  43
    Collapse of the state vector and psychokinetic effect.Helmut Schmidt - 1982 - Foundations of Physics 12 (6):565-581.
    Eugene Wigner and others have speculated that the “collapse of the state vector” during an observation might be a physically real process so that some modification of current quantum theory would be required to describe the interaction with a conscious observer appropriately.Experimental reports on the “psychokinetic effect” as a mental influence on the outcome of quantum jumps suggest that perhaps this effect might be vital for an understanding of the observer's role in quantum mechanics.Combining these two speculations we introduce (...)
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  47.  22
    Collapsing the cardinals of HOD.James Cummings, Sy David Friedman & Mohammad Golshani - 2015 - Journal of Mathematical Logic 15 (2):1550007.
    Assuming that GCH holds and [Formula: see text] is [Formula: see text]-supercompact, we construct a generic extension [Formula: see text] of [Formula: see text] in which [Formula: see text] remains strongly inaccessible and [Formula: see text] for every infinite cardinal [Formula: see text]. In particular the rank-initial segment [Formula: see text] is a model of ZFC in which [Formula: see text] for every infinite cardinal [Formula: see text].
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  48.  51
    The Collapse of Collective Defeat: Lessons from the Lottery Paradox.Kevin B. Korb - 1992 - PSA: Proceedings of the Biennial Meeting of the Philosophy of Science Association 1992:230-236.
    The Lottery Paradox has been thought to provide a reductio argument against probabilistic accounts of inductive inference. As a result, much work in artificial intelligence has concentrated on qualitative methods of inference, including default logics, which are intended to model some varieties of inductive inference. It has recently been shown that the paradox can be generated within qualitative default logics. However, John Pollock's qualitative system of defeasible inference, does avoid the Lottery Paradox by incorporating a rule designed specifically for that (...)
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  49. How quantum mechanics with deterministic collapse localizes macroscopic objects.Arthur Jabs - manuscript
    Why microscopic objects exhibit wave properties (are delocalized), but macroscopic do not (are localized)? Traditional quantum mechanics attributes wave properties to all objects. When complemented with a deterministic collapse model (Quantum Stud.: Math. Found. 3, 279 (2016)) quantum mechanics can dissolve the discrepancy. Collapse in this model means contraction and occurs when the object gets in touch with other objects and satisfies a certain criterion. One single collapse usually does not suffice for localization. But the object rapidly (...)
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  50.  16
    Collapse, Plurals and Sets.Eduardo Alejandro Barrio - 2014 - Principia: An International Journal of Epistemology 18 (3):419.
    This paper raises the question under what circumstances a plurality forms a set. My main point is that not always all things form sets. A provocative way of presenting my position is that, as a result of my approach, there are more pluralities than sets. Another way of presenting the same thesis claims that there are ways of talking about objects that do not always collapse into sets. My argument is related to expressive powers of formal languages. Assuming classical (...)
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