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      Holography for Cosmology

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          Abstract

          We propose a holographic description of four-dimensional single-scalar inflationary universes, and show how cosmological observables, such as the primordial power spectrum, are encoded in the correlation functions of a three-dimensional QFT. The holographic description correctly reproduces standard inflationary predictions in the limit where a perturbative quantization of fluctuations is justified. In the opposite limit, wherein gravity is strongly coupled at early times, we propose a holographic description in terms of perturbative large N QFT. Initiating a holographic phenomenological approach, we show that models containing only two parameters, N and a dimensionful coupling constant, are capable of satisfying the current observational constraints.

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          Real-time gauge/gravity duality

          We present a general prescription for the holographic computation of real-time n-point functions in non-trivial states. In QFT such real-time computations involve a choice of a time contour in the complex time plane. The holographic prescription amounts to ``filling in'' this contour with bulk solutions: real segments of the contour are filled in with Lorentzian solutions while imaginary segments are filled in with Riemannian solutions and appropriate matching conditions are imposed at the corners of the contour. We illustrate the general discussion by computing the 2-point function of a scalar operator using this prescription and by showing that this leads to an unambiguous answer with the correct i epsilon insertions.
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            Hidden supersymmetry of domain walls and cosmologies

            We show that all domain-wall solutions of gravity coupled to scalar fields for which the worldvolume geometry is Minkowski or anti-de Sitter admit Killing spinors, and satisfy corresponding first-order equations involving a superpotential determined by the solution. By analytic continuation, all flat or closed FLRW cosmologies are shown to satisfy similar first-order equations arising from the existence of ``pseudo-Killing'' spinors.
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              Author and article information

              Journal
              31 July 2009
              2010-01-13
              Article
              10.1103/PhysRevD.81.021301
              0907.5542
              484aebe8-dcfc-4cb1-a31a-d5d287f91392

              http://arxiv.org/licenses/nonexclusive-distrib/1.0/

              History
              Custom metadata
              ITF-22
              Phys.Rev.D81:021301,2010
              5 pages; new figure displaying predicted spectral running.
              hep-th astro-ph.CO gr-qc hep-ph

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