12,511 research outputs found

    Cosmological space-times with resolved Big Bang in Yang-Mills matrix models

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    We present simple solutions of IKKT-type matrix models that can be viewed as quantized homogeneous and isotropic cosmological space-times, with finite density of microstates and a regular Big Bang (BB). The BB arises from a signature change of the effective metric on a fuzzy brane embedded in Lorentzian target space, in the presence of a quantized 4-volume form. The Hubble parameter is singular at the BB, and becomes small at late times. There is no singularity from the target space point of view, and the brane is Euclidean "before" the BB. Both recollapsing and expanding universe solutions are obtained, depending on the mass parameters.Comment: 22 pages, 4 figures. V2,V3: improved discussion, typos fixed. V3: published versio

    Quantized open FRW cosmology from Yang-Mills matrix models

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    We present simple solutions of IKKT-type matrix models describing a quantized homogeneous and isotropic cosmology with k=βˆ’1k=-1, finite density of microstates and a resolved Big Bang. At late times, a linear coasting cosmology a(t)∝ta(t) \propto t is obtained, which is remarkably close to observation. The solution consists of two sheets with opposite intrinsic chiralities, which are connected in a Euclidean pre-big bang era.Comment: 5 pages, 1 figure. V2: minor correction

    One-loop stabilization of the fuzzy four-sphere via softly broken SUSY

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    We describe a stabilization mechanism for fuzzy SN4S^4_N in the Euclidean IIB matrix model due to vacuum energy in the presence of a positive mass term. The one-loop effective potential for the radius contains an attractive contribution attributed to supergravity, while the mass term induces a repulsive contribution for small radius due to SUSY breaking. This leads to a stabilization of the radius. The mechanism should be pertinent to recent results on the genesis of 3+1-dimensional space-time in the Minkowskian IIB model.Comment: 28 pages, 3 figures. V2: typos fixed, improved discussion, published version. V3,V4: reference adde

    Conflict of Interest in Federal Procurement

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    String states, loops and effective actions in noncommutative field theory and matrix models

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    Refining previous work by Iso, Kawai and Kitazawa, we discuss bi-local string states as a tool for loop computations in noncommutative field theory and matrix models. Defined in terms of coherent states, they exhibit the stringy features of noncommutative field theory. This leads to a closed form for the 1-loop effective action in position space, capturing the long-range non-local UV/IR mixing for scalar fields. The formalism applies to generic fuzzy spaces. The non-locality is tamed in the maximally supersymmetric IKKT or IIB model, where it gives rise to supergravity. The linearized supergravity interactions are obtained directly in position space at one loop using string states on generic noncommutative branes.Comment: 31 pages, 2 figure

    Festering Questions After Festo

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    Moral Principles Towards a Definition of the Obscene

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