Results for 'Supergravity. '

15 found
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  1.  12
    Quantum supergravity via canonical quantization.P. D. D'Eath - 1986 - In Roger Penrose & C. J. Isham (eds.), Quantum concepts in space and time. New York ;: Oxford University Press. pp. 1--341.
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  2.  7
    Advances in Geometry and Lie Algebras from Supergravity.Pietro Giuseppe Frè - 2018 - Cham: Imprint: Springer.
    This book aims to provide an overview of several topics in advanced Differential Geometry and Lie Group Theory, all of them stemming from mathematical problems in supersymmetric physical theories. It presents a mathematical illustration of the main development in geometry and symmetry theory that occurred under the fertilizing influence of supersymmetry/supergravity. The contents are mainly of mathematical nature, but each topic is introduced by historical information and enriched with motivations from high energy physics, which help the reader in getting a (...)
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  3.  72
    Geometrization in the Yang-Mills, extended supergravity, and Klein-Kaluza versions.Yuval Ne'eman - 1984 - Foundations of Physics 14 (12):1253-1253.
    We relate personal encounters of three kinds with geometrical approaches in the development of a relativistic quantum field theory of the fundamental interactions—including interactions with Nathan Rosen. We characterize the geometrical structures involved and discuss the more recent attempts to develop a unified theory based on a Klein-Kaluza contraction of the eightfold extended supergravity.
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  4.  32
    Black holes and attractors in supergravity.A. Ceresole & S. Ferrara - 2010 - In Harald Fritzsch & K. K. Phua (eds.), Proceedings of the Conference in Honour of Murray Gell-Mann's 80th Birthday. World Scientific. pp. 316.
  5.  36
    New avenues in supersymmetry and supergravity.J. G. Taylor - 1983 - Foundations of Physics 13 (3):395-407.
    We analyze the problem of constructing supersymmetric versions of gauge theories of particles and of gravity which have a closed supersymmetric algebra. Inparticular we present the basic no-go theorems that indicate that in four dimensions it is not possible to construct suitably extended supersymmetric versions of the above theories without drastic modification of the supersymmetric algebra. Two ways past the“N=3” barrier are discussed; that of central charges involved highly constrained versions which appearn difficult to quantize effectively, while the use of (...)
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  6.  19
    Geometrization in the Yang-Mills extended supergravity and Klein-Kaluza versions.Yuval Ne'eman - 1985 - Foundations of Physics 15 (3):261-277.
  7.  10
    Kosmische Polarität und Transformation: Traktat über eine kosmologische Logik und Erkenntnistheorie nebst kritisch-alternativen Reflexionen zur sog. "Supergravitation".Harald Holz - 2001 - Münster: LIT Verlag Münster.
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  8.  11
    The Problem of Time: Quantum Mechanics Versus General Relativity.Edward Anderson - 2017 - Cham: Imprint: Springer.
    This book is a treatise on time and on background independence in physics. It first considers how time is conceived of in each accepted paradigm of physics: Newtonian, special relativity, quantum mechanics (QM) and general relativity (GR). Substantial differences are moreover uncovered between what is meant by time in QM and in GR. These differences jointly source the Problem of Time: Nine interlinked facets which arise upon attempting concurrent treatment of the QM and GR paradigms, as is required in particular (...)
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  9.  34
    From the Sky to the Fundamental Physics.Renata Kallosh - 2018 - Foundations of Physics 48 (10):1279-1290.
    We discuss the relation between string theory/supergravity and the observational data in cosmology, as well as at LHC, past and future. We pay particular attention to the possibility of the future detection of primordial gravitational waves and how this might affect our understanding of fundamental physics.
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  10. What Can We Learn from Stringy Black Holes?Nick Huggett - 2018
    This paper aims to address conceptual issues concerning black holes in the context of string theory, with the aim of illuminating the ontological unification of gravity and matter, and the interpretation of cosmological models. §1 describes the central concepts of the theory: the fungibility of matter and geometry, and the reduction of gravity and supergravity. The ‘standard’ interpretation presented draws on that implicit in the thinking of many (but not all) string theorists, though made more explicit and systematic than usual. (...)
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  11.  10
    Beyond Standard Model Phenomenology at the LHC.Priscila de Aquino - 2013 - Cham: Imprint: Springer.
    This thesis provides an introduction to the physics of the Standard Model and beyond, and to the methods used to analyse Large Hadron Collider (LHC) data. The 'hierarchy problem', astrophysical data and experiments on neutrinos indicate that new physics can be expected at the now accessible TeV scale. This work investigates extensions of the Standard Model with gravitons and gravitinos (in the context of supergravity). The production of these particles in association with jets is studied as one of the most (...)
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  12.  19
    A Conceptual History of Space and Symmetry : From Plato to the Superworld.Pietro Giuseppe Fré - 2018 - Cham: Springer Verlag.
    This book presents the author’s personal historical perspective and conceptual analysis on symmetry and geometry. The author enlightens with modern views the historical process which led to the contemporary vision of space and symmetry that are used in theoretical physics and in particular in such abstract and advanced descriptions of the physical world as those provided by supergravity. The book is written intertwining storytelling and philosophical argumentation with some essential technical material. The author argues that symmetry and geometry are inextricably (...)
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  13.  26
    Non-local Effects of Conformal Anomaly.Krzysztof A. Meissner & Hermann Nicolai - 2018 - Foundations of Physics 48 (10):1150-1158.
    It is shown that the nonlocal anomalous effective actions corresponding to the quantum breaking of the conformal symmetry can lead to observable modifications of Einstein’s equations. The fact that Einstein’s general relativity is in perfect agreement with all observations including cosmological or recently observed gravitational waves imposes strong restrictions on the field content of possible extensions of Einstein’s theory: all viable theories should have vanishing conformal anomalies. It is shown that a complete cancellation of conformal anomalies in \ for both (...)
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  14.  44
    Non-Minimal Electromagnetic Coupling for Spin-3/2 Fields.V. M. Villanueva, J. A. Nieto & O. Obregón - 2003 - Foundations of Physics 33 (5):735-740.
    The problem of the electromagnetic coupling for spin-3/2 particles is discussed. Following supergravity and some previous researches in the field of classical supersymmetric particles, we found that the electromagnetic coupling must not obey a minimal coupling in the sense of coupling the electromagnetic potential, but some kind of an electromagnetic field strength.
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  15.  72
    Non-compact Groups, Coherent States, Relativistic Wave Equations and the Harmonic Oscillator II: Physical and Geometrical Considerations. [REVIEW]Diego Julio Cirilo-Lombardo - 2009 - Foundations of Physics 39 (4):373-396.
    The physical meaning of the particularly simple non-degenerate supermetric, introduced in the previous part by the authors, is elucidated and the possible connection with processes of topological origin in high energy physics is analyzed and discussed. New possible mechanism of the localization of the fields in a particular sector of the supermanifold is proposed and the similarity and differences with a 5-dimensional warped model are shown. The relation with gauge theories of supergravity based in the OSP(1/4) group is explicitly given (...)
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