Results for 'Quantum histories'

988 found
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  1.  24
    Entanglement measures for two-particle quantum histories.Danko D. Georgiev & Eliahu Cohen - 2022 - Physical Review A 106 (6):062437.
    Quantum entanglement is a key resource, which grants quantum systems the ability to accomplish tasks that are classically impossible. Here, we apply Feynman's sum-over-histories formalism to interacting bipartite quantum systems and introduce entanglement measures for bipartite quantum histories. Based on the Schmidt decomposition of the matrix comprised of the Feynman propagator complex coefficients, we prove that bipartite quantum histories are entangled if and only if the Schmidt rank of this matrix is larger (...)
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  2.  43
    Histories in quantum mechanics: distinguishing between formalism and interpretation.Marcelo Losada & Olimpia Lombardi - 2018 - European Journal for Philosophy of Science 8 (3):367-394.
    In spite of being a well articulated proposal, the theory of quantum histories, in its different versions, suffers from certain difficulties that have been pointed out in the literature. Nevertheless, two facets of the proposal have not been sufficiently stressed. On the one hand, it is a non-collapse formalism that should be technically appropriate to supply descriptions based on quantum properties at different times. On the other hand, it intends to provide an interpretation of quantum mechanics (...)
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  3.  5
    Consistency Conditions for Probabilities of Quantum Histories.Giuseppe Nisticò - 1999 - Foundations of Physics 29 (2):221-229.
    In the framework of the histories approach to quantum mechanics developed by Griffiths and Omnès, we consider the question of the uniqueness of the probability assigned to the histories; the question was solved by Omnès only in special cases. We find conditions which ensure uniqueness of such probability in the general case.
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  4.  7
    Consistent Histories in Quantum Cosmology.David Craig & Parampreet Singh - 2011 - Foundations of Physics 41 (3):371-379.
    We illustrate the crucial role played by decoherence (consistency of quantum histories) in extracting consistent quantum probabilities for alternative histories in quantum cosmology. Specifically, within a Wheeler-DeWitt quantization of a flat Friedmann-Robertson-Walker cosmological model sourced with a free massless scalar field, we calculate the probability that the universe is singular in the sense that it assumes zero volume. Classical solutions of this model are a disjoint set of expanding and contracting singular branches. A naive assessment (...)
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  5.  28
    Quantum Gravity.Carlo Rovelli - 2007 - Cambridge University Press.
    Quantum gravity poses the problem of merging quantum mechanics and general relativity, the two great conceptual revolutions in the physics of the twentieth century. The loop and spinfoam approach, presented in this book, is one of the leading research programs in the field. The first part of the book discusses the reformulation of the basis of classical and quantum Hamiltonian physics required by general relativity. The second part covers the basic technical research directions. Appendices include a detailed (...)
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  6.  95
    The history of quantum mechanics as a decisive argument favoring Einstein over lorentz.R. M. Nugayev - 1985 - Philosophy of Science 52 (1):44-63.
    PHILOSOPHY OF SCIENCE, vol. 52, number 1, pp.44-63. R.M. Nugayev, Kazan State |University, USSR. -/- THE HISTORY OF QUANTUM THEORY AS A DECISIVE ARGUMENT FAVORING EINSTEIN OVER LJRENTZ. -/- Abstract. Einstein’s papers on relativity, quantum theory and statistical mechanics were all part of a single research programme ; the aim was to unify mechanics and electrodynamics. It was this broader program – which eventually split into relativistic physics and quantummmechanics – that superseded Lorentz’s theory. The argument of this (...)
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  7.  10
    The quantum story: a history in 40 moments.J. E. Baggott - 2011 - New York: Oxford University Press.
    Prologue: Stormclouds : London, April 1900 -- Quantum of action: The most strenuous work of my life : Berlin, December 1900 ; Annus Mirabilis : Bern, March 1905 ; A little bit of reality : Manchester, April 1913 ; la Comédie Française : Paris, September 1923 ; A strangely beautiful interior : Helgoland, June 1925 ; The self-rotating electron : Leiden, November 1925 ; A late erotic outburst : Swiss Alps, Christmas 1925 -- Quantum interpretation: Ghost field : (...)
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  8.  5
    The History and Philosophy of Quantum Field Theory.Don Robinson - 1994 - PSA: Proceedings of the Biennial Meeting of the Philosophy of Science Association 1994:61 - 68.
    This paper is intended to be an introductory survey of subjects related to the problems dealt with in the three other papers in this symposium on quantum field theory. A brief history of quantum electrodynamics is given and some of the objections to it are stated. A brief history of quantum field theories from the 1970's to the present is then provided. Finally, a sketch of some of the philosophical work that has been done on quantum (...)
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  9.  13
    The quantum mechanics and conceptuality: matter, histories, semantics, and space-time.Diederik Aerts - 2013 - Scientiae Studia 11 (1):75-99.
    Elaboramos aquí una nueva interpretación propuesta recientemente de la teoría cuántica, según la cual las partículas cuánticas son consideradas como entidades conceptuales que median entre los pedazos de materia ordinaria los cuales son considerados como estructuras de memoria para ellos. Nuestro objetivo es identificar qué es lo equivalente para el ámbito cognitivo humano de lo que el espacio-tiempo físico es para el ámbito de las partículas cuánticas y de la materia ordinaria. Para ello, se identifica la noción de "historia" como (...)
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  10.  5
    Branch Dependence in the “Consistent Histories” Approach to Quantum Mechanics.Thomas Müller - 2007 - Foundations of Physics 37 (2):253-276.
    In the consistent histories formalism one specifies a family of histories as an exhaustive set of pairwise exclusive descriptions of the dynamics of a quantum system. We define branching families of histories, which strike a middle ground between the two available mathematically precise definitions of families of histories, viz., product families and Isham’s history projector operator formalism. The former are too narrow for applications, and the latter’s generality comes at a certain cost, barring an intuitive (...)
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  11.  6
    Counterfactual Histories: The Beginning of Quantum Physics.Osvaldo Pessoa - 2001 - Philosophy of Science 68 (S3):S519-S530.
    This paper presents a method for investigating counterfactual histories of science. A central notion to our theory of science are “advances”, which are units passed among scientists and which would be conserved in passing from one possible history to another. Advances are connected to each other by nets of causal influence, and we distinguish strong and weak influences. Around sixty types of advances are grouped into ten classes. As our case study, we examine the beginning of the Old (...) Theory, using a computer to store and process historical information. We describe four plausible possible histories, along with six other implausible ones. (shrink)
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  12.  69
    History, Causation, and the Many-Worlds Interpretation of Quantum Mechanics.Bruce S. Bennett & Moletlanyi Tshipa - forthcoming - Journal of the Philosophy of History:1-22.
    The Many-Worlds Interpretation is a theory in physics which proposes that, rather than quantum-level events being resolved randomly as according to the Copenhagen Interpretation, the universe constantly divides into different versions or worlds. All physically possible worlds occur, though some outcomes are more likely than others, and therefore all possible histories exist. This paper explores some implications of this for history, especially concerning causation. Unlike counterfactuals, which concern different starting conditions, MWI concerns different outcomes of the same starting (...)
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  13.  1
    The history of quantum theory.Friedrich Hund - 1974 - New York,: Barnes & Noble.
    Tous les mots, phrases et expressions avec leur prononciation pour pouvoir communiquer en toute situation.
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  14. The History and Philosophy of Quantum Field Theory.Don Robinson - 1994 - PSA Proceedings of the Biennial Meeting of the Philosophy of Science Association 1994 (2):60-68.
    In November of 1925 Born, Heisenberg and Jordan wrote an article together in which they demonstrated that Einstein's energy fluctuation formula could be derived from quantum mechanics. They remark that the equations are subject to reinterpretation. Specifically, the states of radiation oscillators can be reinterpreted as numbers of quanta of radiation. They also connected this latter idea up with Bose-Einstein statistics. Heisenberg wrote to Pauli that it was Jordan who contributed the idea of reinterpreting the terms. This was the (...)
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  15. Macroscopic Superpositions, Decoherent Histories, and the Emergence of Hydrodynamical Behaviour.Jonathan Halliwell - 2010 - In Simon Saunders, Jonathan Barrett, Adrian Kent & David Wallace (eds.), Many Worlds?: Everett, Quantum Theory, & Reality. Oxford, GB: Oxford University Press UK.
     
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  16.  20
    Counterfactual Histories: The Beginning of Quantum Physics.Osvaldo Pessoa - 2001 - Philosophy of Science 68 (3):S519 - S530.
    This paper presents a method for investigating counterfactual histories of science. A central notion to our theory of science are "advances" (ideas, data, etc.), which are units passed among scientists and which would be conserved in passing from one possible history to another. Advances are connected to each other by nets of causal influence, and we distinguish strong and weak influences. Around sixty types of advances are grouped into ten classes. As our case study, we examine the beginning of (...)
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  17.  11
    Oxford handbook of the history of Quantum interpretations.Olival Freire (ed.) - 2022 - Oxford: Oxford University Press.
    Crucial to most research in physics, as well as leading to the development of inventions such as the transistor and the laser, quantum mechanics approaches its centenary with an impressive record. However, the field has also long been the subject of ongoing debates about the foundations and interpretation of the theory, referred to as the quantum controversy. This Oxford Handbook offers a historical overview of the contrasts which have been at the heart of quantum physics for the (...)
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  18.  18
    Counterfactual histories: The beginning of quantum physics.Osvaldo Pessoa Jr - 2001 - Proceedings of the Philosophy of Science Association 2001 (3):S519-.
    This paper presents a method for investigating counterfactual histories of science. A central notion to our theory of science are "advances" , which are units passed among scientists and which would be conserved in passing from one possible history to another. Advances are connected to each other by nets of causal influence, and we distinguish strong and weak influences. Around sixty types of advances are grouped into ten classes. As our case study, we examine the beginning of the Old (...)
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  19. Quantum mereotopology.Barry Smith & Berit O. Brogaard - 2002 - Annals of Mathematics and Artificial Intelligence 36 (1):153-175.
    Mereotopology faces problems when its methods are extended to deal with time and change. We offer a new solution to these problems, based on a theory of partitions of reality which allows us to simulate (and also to generalize) aspects of set theory within a mereotopological framework. This theory is extended to a theory of coarse- and fine-grained histories (or finite sequences of partitions evolving over time), drawing on machinery developed within the framework of the so-called ‘consistent histories (...)
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  20.  22
    On the Consistency of the Consistent Histories Approach to Quantum Mechanics.Elias Okon & Daniel Sudarsky - 2014 - Foundations of Physics 44 (1):19-33.
    The Consistent Histories (CH) formalism aims at a quantum mechanical framework which could be applied even to the universe as a whole. CH stresses the importance of histories for quantum mechanics, as opposed to measurements, and maintains that a satisfactory formulation of quantum mechanics allows one to assign probabilities to alternative histories of a quantum system. It further proposes that each realm, that is, each set of histories to which probabilities can be (...)
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  21.  7
    Quantum theory as an indication of a new order in physics. Part A. The development of new orders as shown through the history of physics.D. Bohm - 1971 - Foundations of Physics 1 (4):359-381.
    In this paper, we discuss the general significance of order in physics, as a first step toward the development of new notions of order. We begin with a brief historical discussion of the notions of order underlying ancient Greek views, and then go on to show how these changed in key ways with the rise of classical physics. This leads to a broader view of the significance of order, which helps to indicate what is to be meant by a change (...)
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  22.  6
    The History of Quantum Theory. Friedrich Hund, Gordon Reece.Paul Hanle - 1976 - Isis 67 (4):625-626.
  23.  38
    Compendium of Quantum Physics: Concepts, Experiments, History and Philosophy.Daniel Greenberger, Klaus Hentschel & Friedel Weinert (eds.) - 2009 - Springer.
    Concepts, Experiments, History and Philosophy Daniel Greenberger, Klaus Hentschel, Friedel Weinert. 5. W. Hittorf, Ueber die Elektricit ̈atsleitung der Gase , Annalen der Physik 136, 1–31, 197–234 (1869); Engl. transl. On the Conduction of ...
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  24.  11
    Weak values and consistent histories in quantum theory.Ruth Kastner - 2003 - Studies in History and Philosophy of Science Part B: Studies in History and Philosophy of Modern Physics 35 (1):57-71.
    A relation is obtained between weak values of quantum observables and the consistency criterion for histories of quantum events. It is shown that “strange” weak values for projection operators always correspond to inconsistent families of histories. It is argued that using the ABL rule to obtain probabilities for counterfactual measurements corresponding to those strange weak values gives inconsistent results. This problem is shown to be remedied by using the conditional weight, or pseudo-probability, obtained from the multiple-time (...)
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  25. Quantum Theory Centenary: the pre- and early history.Dieter Hoffmann, J. Lemmerich & Ann Hentschel (eds.) - 2000 - Bad Honnef: Deutsche Physikalische Gesellschaft.
  26.  4
    Weak values and consistent histories in quantum theory.Ruth Kastner - 2004 - Studies in History and Philosophy of Science Part B: Studies in History and Philosophy of Modern Physics 35 (1):57-71.
    ABSTRACT: A relation is obtained between weak values of quantum observables and the consistency criterion for histories of quantum events. It is shown that ``strange'' weak values for projection operators always correspond to inconsistent families of histories. It is argued that using the ABL rule to obtain probabilities for counterfactual measurements corresponding to those strange weak values gives inconsistent results. This problem is shown to be remedied by using the conditional weight, or pseudo-probability, obtained from the (...)
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  27.  4
    Quantum Generations: a History of Physics in the Twentieth Century.Brian Pippard - 2002 - Studies in History and Philosophy of Science Part B: Studies in History and Philosophy of Modern Physics 33 (1):143-145.
  28.  13
    Time and quantum theory: A history and a prospectus.Thomas Pashby - 2015 - Studies in History and Philosophy of Science Part B: Studies in History and Philosophy of Modern Physics 52 (Part A):24-38.
    In this paper I am concerned with analyzing in detail how ideas and expectations regarding the role of time in quantum theory arose and evolved in the early years of quantum mechanics. The general theme is that expectations which seemed reasonable from the point of view of matrix mechanics and Dirac's q-number formalism became implausible in light of Dirac-Jordan transformation theory, and were dashed by von Neumann's Hilbert space formalism which came to replace it. Nonetheless, I will identify (...)
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  29.  2
    Consistent Histories and the Interpretation of Quantum Mechanics.Roland Omnès - 1995 - In M. Ferrero & Alwyn van der Merwe (eds.), Fundamental Problems in Quantum Physics. Springer. pp. 215--224.
  30.  15
    Quantum physics, illusion or reality?Alastair I. M. Rae - 1986 - New York: Cambridge University Press.
    Quantum physics is believed to be the fundamental theory underlying our understanding of the physical universe. However, it is based on concepts and principles that have always been difficult to understand and controversial in their interpretation. This book aims to explain these issues using a minimum of technical language and mathematics. After a brief introduction to the ideas of quantum physics, the problems of interpretation are identified and explained. The rest of the book surveys, describes and criticises a (...)
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  31.  20
    Everettian quantum mechanics without branching time.Alastair Wilson - 2012 - Synthese 188 (1):67-84.
    In this paper I assess the prospects for combining contemporary Everettian quantum mechanics (EQM) with branching-time semantics in the tradition of Kripke, Prior, Thomason and Belnap. I begin by outlining the salient features of ‘decoherence-based’ EQM, and of the ‘consistent histories’ formalism that is particularly apt for conceptual discussions in EQM. This formalism permits of both ‘branching worlds’ and ‘parallel worlds’ interpretations; the metaphysics of EQM is in this sense underdetermined by the physics. A prominent argument due to (...)
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  32.  5
    A Pre-History of Quantum Gravity: The Seventeenth Century Legacy and the Deep Metaphysics of Space beyond Substantivalism and Relationism.Edward Slowik - unknown
    This essay demonstrates the inadequacy of contemporary substantivalist and relationist interpretations of quantum gravity hypotheses via an historical investigation of the debate on the underlying ontology of space in the seventeenth century. Viewed in the proper context, there are crucial similarities between seventeenth century theories of space and contemporary work on the ontological foundations of spacetime theories, and these similarities challenge the utility of the substantival/relational dichotomy by revealing a host of underlying conceptual issues that do not naturally align (...)
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  33. The consistent histories interpretation of quantum mechanics.Edward MacKinnon - unknown
    The consistent histories reformulation of quantum mechanics was developed by Robert Griffiths, given a formal logical systematization by Roland Omn\`{e}s, and under the label `decoherent histories', was independently developed by Murray Gell-Mann and James Hartle and extended to quantum cosmology. Criticisms of CH involve issues of meaning, truth, objectivity, and coherence, a mixture of philosophy and physics. We will briefly consider the original formulation of CH and some basic objections. The reply to these objections, like the (...)
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  34. Sources for the History of Quantum Physics: An Inventory and Report.Thomas S. Kuhn, John L. Heilbron, Paul Forman, Lini Allen & Max Jammer - 1968 - Synthese 18 (1):118-120.
  35.  7
    Quantum concepts in physics: an alternative approach to the understanding of quantum mechanics.Malcolm S. Longair - 2013 - New york: Cambridge University Press.
    Written for advanced undergraduates, physicists, and historians and philosophers of physics, this book tells the story of the development of our understanding of quantum phenomena through the extraordinary years of the first three decades of the twentieth century. Rather than following the standard axiomatic approach, this book adopts a historical perspective, explaining clearly and authoritatively how pioneers such as Heisenberg, Schrodinger, Pauli and Dirac developed the fundamentals of quantum mechanics and merged them into a coherent theory, and why (...)
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  36.  10
    Weak values and consistent histories in quantum theory.Ruth Kastner - 2004 - Studies in History and Philosophy of Science Part B: Studies in History and Philosophy of Modern Physics 35 (1):57-71.
    A relation is obtained between weak values of quantum observables and the consistency criterion for histories of quantum events. It is shown that “strange” weak values for projection operators always correspond to inconsistent families of histories. It is argued that using the ABL rule to obtain probabilities for counterfactual measurements corresponding to those strange weak values gives inconsistent results. This problem is shown to be remedied by using the conditional weight, or pseudo-probability, obtained from the multiple-time (...)
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  37.  27
    Relational Quantum Mechanics is About Facts, Not States: A Reply to Pienaar and Brukner.Andrea Di Biagio & Carlo Rovelli - 2022 - Foundations of Physics 52 (3):1-21.
    In recent works, Časlav Brukner and Jacques Pienaar have raised interesting objections to the relational interpretation of quantum mechanics. We answer these objections in detail and show that, far from questioning the viability of the interpretation, they sharpen and clarify it.
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  38.  3
    The Early History of David Bohm’s Quantum Mechanics Through the Perspective of Ludwik Fleck’s Thought-Collectives.Christian Forstner - 2008 - Minerva 46 (2):215-229.
    This paper analyses the early history of David Bohm’s mechanics from the perspective of Ludwik Fleck’s thought-collectives and shows how the thought-style of the scientific community limits the possible modes of thinking and what new possibilities for the construction of a new theory arise if these limits are removed.
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  39. Philosophy of Physics: Quantum Theory.Tim Maudlin - 2019 - Princeton: Princeton University Press.
    A sophisticated and original introduction to the philosophy of quantum mechanics from one of the world’s leading philosophers of physics In this book, Tim Maudlin, one of the world’s leading philosophers of physics, offers a sophisticated, original introduction to the philosophy of quantum mechanics. The briefest, clearest, and most refined account of his influential approach to the subject, the book will be invaluable to all students of philosophy and physics. Quantum mechanics holds a unique place in the (...)
  40. A Quantum View of History.The Editor The Editor - 1934 - Pacific Philosophical Quarterly 15 (3):199.
  41.  9
    Quantum Objects: Non-Local Correlation, Causality and Objective Indefiniteness in the Quantum World.Gregg Jaeger - 2013 - Berlin, Heidelberg: Imprint: Springer.
    This monograph identifies the essential characteristics of the objects described by current quantum theory and considers their relationship to space-time. In the process, it explicates the senses in which quantum objects may be consistently considered to have parts of which they may be composed or into which they may be decomposed. The book also demonstrates the degree to which reduction is possible in quantum mechanics, showing it to be related to the objective indefiniteness of quantum properties (...)
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  42.  42
    Spontaneous Symmetry Breaking in Finite Quantum Systems: a decoherent-histories approach.David Wallace - unknown
    Spontaneous symmetry breaking in quantum systems, such as ferromagnets, is normally described as degeneracy of the ground state; however, it is well established that this degeneracy only occurs in spatially infinite systems, and even better established that ferromagnets are not spatially infinite. I review this well-known paradox, and consider a popular solution where the symmetry is explicitly broken by some external field which goes to zero in the infinite-volume limit; although this is formally satisfactory, I argue that it must (...)
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  43.  2
    Quantum-mechanical histories and the uncertainty principle.J. J. Halliwell - 1995 - In M. Ferrero & Alwyn van der Merwe (eds.), Fundamental Problems in Quantum Physics. Springer. pp. 73--113.
  44.  5
    Quantum Historiographv and the Archive for History of Quantum Physics.John L. Heilbron - 1968 - History of Science 7 (1):90-111.
  45.  4
    The History of Quantum Theory.Werner Heisenberg - unknown
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  46.  3
    Quantum mechanics.Kate Shoup - 2019 - New York, NY: Cavendish Square Publishing.
    A book for high school students about the history and key scientists related to the discipline of quantum mechanics.
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  47.  8
    The Quantum Handshake: Entanglement, Nonlocality and Transactions.John G. Cramer - 2015 - Cham: Imprint: Springer.
    This book shines bright light into the dim recesses of quantum theory, where the mysteries of entanglement, nonlocality, and wave collapse have motivated some to conjure up multiple universes, and others to adopt a "shut up and calculate" mentality. After an extensive and accessible introduction to quantum mechanics and its history, the author turns attention to his transactional model. Using a quantum handshake between normal and time-reversed waves, this model provides a clear visual picture explaining the baffling (...)
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  48.  13
    The New Quantum Logic.Robert B. Griffiths - 2014 - Foundations of Physics 44 (6):610-640.
    It is shown how all the major conceptual difficulties of standard (textbook) quantum mechanics, including the two measurement problems and the (supposed) nonlocality that conflicts with special relativity, are resolved in the consistent or decoherent histories interpretation of quantum mechanics by using a modified form of quantum logic to discuss quantum properties (subspaces of the quantum Hilbert space), and treating quantum time development as a stochastic process. The histories approach in turn gives (...)
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  49.  5
    On Time Asymmetry and History in an Everett Quantum World.Federico Laudisa - 2000 - Foundations of Physics 30 (9):1525-1538.
    It is usually held that the standard collapse model of a quantum measurement process grounds a kind of fundamental time asymmetry. The question whether and how it should be possible to reconstruct uniquely one's own history in an Everett no-collapse interpretation of quantum theory is investigated. A particular approach to the Everett interpretation, due to John S. Bell, is considered, according to which one of the chief claims of the Everett quantum theory is precisely that it allows (...)
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  50.  1
    Quantum generations: A history of physics in the twentieth century - Helge kragh; princeton university press, princeton, NJ, 1999, pp. XIV+494, $18.95, ISBN 0-691-09552-. [REVIEW]B. Pippard - 2002 - Studies in History and Philosophy of Science Part B: Studies in History and Philosophy of Modern Physics 33 (1):143-145.
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