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False Vacuum: Early Universe Cosmology and the Development of Inflation

In Eisenstaedt Jean & Knox A. J. (eds.), The Universe of General Relativity. Birkhauser. pp. 223-257 (2005)

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  1. Conceptual Development of 20th Century Field Theories.Tian Yu Cao - 1997 - Cambridge University Press.
    From reviews of the hardback edition: a deep study of 20th century field ... of the conceptual origins and development of twentieth century field theories, ...
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  • What Was Einstein's 'Fateful Prejudice'?John D. Norton - 1982 - In John Norton (ed.).
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  • Einstein, the Hole Argument and the Reality of Space.John D. Norton - 1982 - In John Norton (ed.).
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  • Out of the Labyrinth: Einstein, Hertz and Göttingen Answer to the Hole Argument.John D. Norton & Don Howard - 1982 - In John Norton (ed.).
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  • The Physical Content of General Covariance.John D. Norton - 1982 - In John Norton (ed.).
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  • The Meaning of Relativity.Albert Einstein - 1922 - London,: Routledge. Edited by Edwin P. Adams.
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  • The Logic of Modern Physics.Percy Williams Bridgman - 1927 - New York, NY, USA: Arno Press.
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  • Relativity, thermodynamics and cosmology.Richard Chace Tolman - 1934 - Oxford,: Clarendon Press.
    A distinguished American physicist and teacher delivers a landmark study thatdevelops three essential scientific themes on each subject.
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  • Bangs, Crunches, Whimpers, and Shrieks: Singularities and Acausalities in Relativistic Spacetimes.John Earman - 1995 - Oxford University Press USA.
    Focusing on spacetime singularities, Earman engages with a host of foundational issues at the intersection of science and philosophy, ranging from the big bang to the possibility of time travel.
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  • Albert Einstein: Philosopher-Scientist.Paul Arthur Schilpp (ed.) - 1959 - Mjg Books.
    Written by the man considered the "Person of the Century" by Time magazine, this is not a glimpse into Einstein's personal life, but an extension and elaboration into his thinking on science. Two of the great theories of the physical world were created in the early 20th century: the theory of relativity and quantum mechanics. Einstein created the theory of relativity and was also one of the founders of quantum theory. Here, Einstein describes the failure of classical mechanics and the (...)
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  • The Genesis of General Relativity.Renn Jürgen (ed.) - 2007 - Springer.
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  • .Jeremy Butterfield & John Earman - 1977
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  • Einstein and the Kaluza–Klein particle.Jeroen van Dongen - 2002 - Studies in History and Philosophy of Science Part B: Studies in History and Philosophy of Modern Physics 33 (2):185-210.
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  • Relativity, Thermodynamics and Cosmology. By Richard C. Tolman. Oxford at the Clarendon Press, 1934. Pp. XV + 502. $8.50.Enos E. Witmer - 1935 - Philosophy of Science 2 (2):262-265.
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  • The Relativity of Discovery: Hilberts First Note on the Foundations of Physics.Tilman Sauer - 1999 - Archive for History of Exact Sciences 53 (6):529-575.
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  • Reichenbach’s ∈-Definition of Simultaneity in Historical and Philosophical Perspective.Robert Rynasiewicz - 2003 - Vienna Circle Institute Yearbook 10:121-129.
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  • The quantum vacuum and the cosmological constant problem.Svend E. Rugh & Henrik Zinkernagel - 2001 - Studies in History and Philosophy of Science Part B: Studies in History and Philosophy of Modern Physics 33 (4):663-705.
    The cosmological constant problem arises at the intersection between general relativity and quantum field theory, and is regarded as a fundamental problem in modern physics. In this paper we describe the historical and conceptual origin of the cosmological constant problem which is intimately connected to the vacuum concept in quantum field theory. We critically discuss how the problem rests on the notion of physically real vacuum energy, and which relations between general relativity and quantum field theory are assumed in order (...)
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  • The quantum vacuum and the cosmological constant problem.Svend E. Rugh & Henrik Zinkernagel - 2002 - Studies in History and Philosophy of Science Part B: Studies in History and Philosophy of Modern Physics 33 (4):663-705.
    The cosmological constant problem arises at the intersection between general relativity and quantum field theory, and is regarded as a fundamental problem in modern physics. In this paper we describe the historical and conceptual origin of the cosmological constant problem which is intimately connected to the vacuum concept in quantum field theory. We critically discuss how the problem rests on the notion of physically real vacuum energy, and which relations between general relativity and quantum field theory are assumed in order (...)
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  • Resolving discordant results: Modern solar oblateness experiments.Sam Richman - 1996 - Studies in History and Philosophy of Science Part B: Studies in History and Philosophy of Modern Physics 27 (1):1-22.
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  • Constructing Quarks: A sociological history of particle physics.Andrew Pickering - 1984 - University of Chicago Press.
    Inviting a reappraisal of the status of scientific knowledge, Andrew Pickering suggests that scientists are not mere passive observers and reporters of nature.
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  • Constructing Quarks: A Sociological History of Particle Physics. Andrew Pickering.James T. Cushing - 1985 - Philosophy of Science 52 (4):640-641.
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  • What was Einstein's Principle of Equivalence?John Norton - 1985 - Studies in History and Philosophy of Science Part A 16 (3):203.
    sn y™to˜er —nd xovem˜er IWHUD just over two ye—rs —fter the ™ompletion of his spe™i—l theory of rel—tivityD iinstein m—de the ˜re—kthrough th—t set him on the p—th to the gener—l theory of rel—tivityF ‡hile prep—ring — review —rti™le on his new spe™i—l theory of rel—tivityD he ˜e™—me ™onvin™ed th—t the key to the extension of the prin™iple of rel—tivity to —™™eler—ted motion l—y in the rem—rk—˜le —nd unexpl—ined empiri™—l ™oin™iden™e of the equ—lity of inerti—l —nd gr—vit—tion—l m—ssesF „o interpret (...)
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  • Coordinates and covariance: Einstein's view of space-time and the modern view. [REVIEW]John Norton - 1989 - Foundations of Physics 19 (10):1215-1263.
    Where modern formulations of relatively theory use differentiable manifolds to space-time, Einstein simply used open sets of R 4 , following the then current methods of differential geometry. This fact aids resolution of a number of outstanding puzzles concerning Einstein's use of coordinate systems and covariance principles, including the claimed physical significance of covariance principles, their connection to relativity principles, Einstein's apparent confusion of coordinate systems and frames of reference, and his failure to distinguish active and passive transformations, especially in (...)
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  • Society of mind.Marvin Minsky - 1991 - Artificial Intelligence 48 (3):371-396.
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  • The Reaction to Relativity Theory I: The Anti-Einstein Campaign in Germany in 1920.Hubert Goenner - 1993 - Science in Context 6 (1):107-133.
    The ArgumentDevelopments in theoretical physics, even when they are revolutionary for physics, usually donotenter public awareness. The reaction to the special relativity theory is one of the few exceptions. The conceptual changes brought by special relativity to our notions of space and time, induced a lively debate not only within intellectual circles but in many strata of the educated middle class. In this article, I focus on a particular moment of public reaction to special and general relativity theory and to (...)
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  • Science and Convention.Jerzy Giedymin - 1985 - Philosophy of Science 52 (1):168-169.
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  • Die erkenntnistheoretischen Grundlagen der verschiedenen physikalischen Relativitätstheorien.E. Gehrcke - 1914 - Kant Studien 19 (1-3):481-487.
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  • Foundations of Space-Time Theories.Michael Friedman - 1987 - Noûs 21 (4):595-601.
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  • The necessity of quantizing the gravitational field.Kenneth Eppley & Eric Hannah - 1977 - Foundations of Physics 7 (1-2):51-68.
    The assumption that a classical gravitational field interacts with a quantum system is shown to lead to violations of either momentum conservation or the uncertainty principle, or to result in transmission of signals faster thanc. A similar argument holds for the electromagnetic field.
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  • The Expanding Universe.Arthur Eddington - 1933 - Philosophy 8 (30):219-220.
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  • Einstein and Singularities.John Earman & Jean Eisenstaedt - 1999 - Studies in History and Philosophy of Science Part B: Studies in History and Philosophy of Modern Physics 30 (2):185-235.
    Except for a few brief periods, Einstein was uninterested in analysing the nature of the spacetime singularities that appeared in solutions to his gravitational field equations for general relativity. The existence of such monstrosities reinforced his conviction that general relativity was an incomplete theory which would be superseded by a singularity-free unified field theory. Nevertheless, on a number of occasions between 1916 and the end of his life, Einstein was forced to confront singularities. His reactions show a strange asymmetry: he (...)
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  • Einstein and Singularities.John Earman & Jean Eisenstaedt - 1998 - Studies in History and Philosophy of Modern Physics 30 (2):185-235.
    Except for a few brief periods, Einstein was uninterested in analysing the nature of the spacetime singularities that appeared in solutions to his gravitational field equations for general relativity. The existence of such monstrosities reinforced his conviction that general relativity was an incomplete theory which would be superseded by a singularity-free unified field theory. Nevertheless, on a number of occasions between 1916 and the end of his life, Einstein was forced to confront singularities. His reactions show a strange asymmetry: he (...)
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  • Learning Mathematics: The Cognitive Science Approach to Mathematics Education.Robert B. Davis - 1985 - British Journal of Educational Studies 33 (3):313-314.
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  • Henri Poincare's criticism of fin de siecle electrodynamics.Olivier Darrigol - 1995 - Studies in History and Philosophy of Science Part B: Studies in History and Philosophy of Modern Physics 26 (1):1-44.
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  • Henri Poincaré's criticism of Fin De Siècle electrodynamics.Olivier Darrigol - 1995 - Studies in History and Philosophy of Science Part B: Studies in History and Philosophy of Modern Physics 26 (1):1-44.
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  • Hermann Minkowski and the postulate of relativity.Leo Corry - 1997 - Archive for History of Exact Sciences 51 (4):273-314.
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  • Exploring the limits of classical physics: Planck, Einstein, and the structure of a scientific revolution.Jochen Büttner, Jürgen Renn & Matthias Schemmel - 2003 - Studies in History and Philosophy of Science Part B: Studies in History and Philosophy of Modern Physics 34 (1):37-59.
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  • Exploring the limits of classical physics: Planck, Einstein, and the structure of a scientific revolution.Jochen Büttner, Jürgen Renn & Matthias Schemmel - 2003 - Studies in History and Philosophy of Science Part B: Studies in History and Philosophy of Modern Physics 34 (1):37-59.
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  • Cosmology.H. Bondi - 1954 - British Journal for the Philosophy of Science 4 (16):350-352.
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  • Relativity: The Special and the General Theory.Albert Einstein - 2001 - Routledge.
    Time magazine's "Man of the Century", Albert Einstein is the founder of modern physics and his theory of relativity is the most important scientific idea of the modern era. In this short book, Einstein explains, using the minimum of mathematical terms, the basic ideas and principles of the theory that has shaped the world we live in today. Unsurpassed by any subsequent books on relativity, this remains the most popular and useful exposition of Einstein's immense contribution to human knowledge. With (...)
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  • Black Holes and Time Warps: Einsteins Outrageous Legacy.Kip S. Thorne - 1994 - W. W. Norton & Company.
    In this masterfully written and brilliantly informed work, Dr. Rhorne, the Feynman Professor of Theoretical Physics at Caltech, leads readers through an elegant, always human, tapestry of interlocking themes, answering the great question: what principles control our universe and why do physicists think they know what they know? Features an introduction by Stephen Hawking.
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  • Foundations of Space-Time Theories.Micheal Friedman - 1983 - Princeton University Press.
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  • Special theory of relativity.Clive William Kilmister - 1970 - New York,: Pergamon Press.
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  • General covariance and the foundations of general relativity: Eight decades of dispute.John D. Norton - 1993 - Reports of Progress in Physics 56:791--861.
    iinstein oered the prin™iple of gener—l ™ov—ri—n™e —s the fund—ment—l physi™—l prin™iple of his gener—l theory of rel—tivityD —nd —s responsi˜le for extending the prin™iple of rel—tivity to —™™eler—ted motionF „his view w—s disputed —lmost immedi—tely with the ™ounterE™l—im th—t the prin™iple w—s no rel—tivity prin™iple —nd w—s physi™—lly v—™uousF „he dis—greeE ment persists tod—yF „his —rti™le reviews the development of iinstein9s thought on gener—l ™ov—ri—n™eD its rel—tion to the found—tions of gener—l rel—tivity —nd the evolution of the ™ontinuing de˜—te (...)
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  • Dynamics of Reason.Michael Friedman - 2001 - Philosophy and Phenomenological Research 68 (3):702-712.
    This book introduces a new approach to the issue of radical scientific revolutions, or "paradigm-shifts," given prominence in the work of Thomas Kuhn. The book articulates a dynamical and historicized version of the conception of scientific a priori principles first developed by the philosopher Immanuel Kant. This approach defends the Enlightenment ideal of scientific objectivity and universality while simultaneously doing justice to the revolutionary changes within the sciences that have since undermined Kant's original defense of this ideal. Through a modified (...)
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  • Über den physikalischen sinn der relativitätspostulate.E. Kretschmann - 1917 - Annalen Der Physik 53:575--614.
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  • Relativitätstheorie und Erkenntnis apriori.Hans Reichenbach - 1920 - Annalen der Philosophie 2:493.
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  • Tracking down gauge: An ode to the constrained Hamiltonian formalism.John Earman - 2003 - In Katherine Brading & Elena Castellani (eds.), Symmetries in Physics: Philosophical Reflections. Cambridge University Press. pp. 140--62.
    Like moths attracted to a bright light, philosophers are drawn to glitz. So in discussing the notions of ‘gauge’, ‘gauge freedom’, and ‘gauge theories’, they have tended to focus on examples such as Yang–Mills theories and on the mathematical apparatus of fibre bundles. But while Yang–Mills theories are crucial to modern elementary particle physics, they are only a special case of a much broader class of gauge theories. And while the fibre bundle apparatus turned out, in retrospect, to be the (...)
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  • Quantum spacetime: What do we know?Carlo Rovelli - 2001 - In Craig Callender & Nick Huggett (eds.), Physics Meets Philosophy at the Planck Scale. Cambridge University Press. pp. 101--22.
    This is a contribution to a book on quantum gravity and philosophy. I discuss nature and origin of the problem of quantum gravity. I examine the knowledge that may guide us in addressing this problem, and the reliability of such knowledge. In particular, I discuss the subtle modification of the notions of space and time engendered by general relativity, and how these might merge into quantum theory. I also present some reflections on methodological questions, and on some general issues in (...)
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  • Einstein, Nordstrom, and the Early Demise of Scalar, Lorentz Covariant Theories of Gravitation.John D. Norton - unknown
    The advent of the general theory of relativity was so entirely the work of just one person - Albert Einstein - that we cannot but wonder how long it would have taken without him for the connection between gravitation and spacetime curvature to be discovered. What would have happened if there were no Einstein? Few doubt that a theory much like special relativity would have emerged one way or another from the researchers of Lorentz, Poincaré and others. But where would (...)
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