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      Contravariant geometry and emergent gravity from noncommutative gauge theories

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      Classical and Quantum Gravity
      IOP Publishing

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          M Theory As A Matrix Model: A Conjecture

          We suggest and motivate a precise equivalence between uncompactified eleven dimensional M-theory and the N = infinity limit of the supersymmetric matrix quantum mechanics describing D0-branes. The evidence for the conjecture consists of several correspondences between the two theories. As a consequence of supersymmetry the simple matrix model is rich enough to describe the properties of the entire Fock space of massless well separated particles of the supergravity theory. In one particular kinematic situation the leading large distance interaction of these particles is exactly described by supergravity . The model appears to be a nonperturbative realization of the holographic principle. The membrane states required by M-theory are contained as excitations of the matrix model. The membrane world volume is a noncommutative geometry embedded in a noncommutative spacetime.
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            A Large-N Reduced Model as Superstring

            A matrix model which has the manifest ten-dimensional N=2 super Poincare invariance is proposed. Interactions between BPS-saturated states are analyzed to show that massless spectrum is the same as that of type IIB string theory. It is conjectured that the large-N reduced model of ten-dimensional super Yang-Mills theory can be regarded as a constructive definition of this model and therefore is equivalent to superstring theory.
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              ON THE INTERPRETATION OF MINIMAL LENGTH IN STRING THEORIES

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                Author and article information

                Journal
                Classical and Quantum Gravity
                Class. Quantum Grav.
                IOP Publishing
                0264-9381
                1361-6382
                March 08 2018
                March 08 2018
                February 01 2018
                : 35
                : 5
                : 055009
                Article
                10.1088/1361-6382/aaa533
                634e6bc1-7281-48f8-aca7-b1f1337153c7
                © 2018

                http://iopscience.iop.org/info/page/text-and-data-mining

                http://iopscience.iop.org/page/copyright

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