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Starting from a new understanding of the vacuum energy problem based on the combination of the phase space regularization and the holographic bound, we argue that quantum gravity should be understood as gravitized quantum theory, that is, quantum theory wherein the geometry and topology of the state-space if fully dynamical, in analogy with the dynamical nature of spacetime in Einstein's general relativity.
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2014
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L. Freidel, R. G. Leigh, and D. Minic, “Metastring Theory and Modular Space-time,”
2015
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L. Freidel, R. G. Leigh, and D. Minic, “Modular spacetime,”
2015
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2017
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2017
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2017
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2017
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2017
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2017
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2018
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U. Aydemir, “A scale at 10 MeV, gravitational topological vacuum, and large extra dimensions,”
2018
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L. Freidel, J. Kowalski-Glikman, R. G. Leigh, and D. Minic, “Theory of metaparticles,”
2019
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I. Esteban, M. C. Gonzalez-Garcia, M. Maltoni, T. Schwetz, and A. Zhou, “The fate of hints: updated global analysis of three-flavor neutrino oscillations,”
2020
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2021
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2021
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P. Berglund, T. Hübsch, and D. Minic, “Stringy Bubbles Solve de Sitter Troubles,”
2021
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Springer Verlag, Singapore, Sept., 2022
P. Berglund, T. Hübsch, and D. Minic, “Mirror Symmetry, Born Geometry and String Theory,” in · 2022
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R. L. Workman
2022
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P. Berglund, T. Hübsch, D. Mattingly, and D. Minic, “Gravitizing the Quantum,”
2022
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2022
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2023
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D. Minic, “The vacuum energy problem in quantum gravity and the masses of elementary particles,”
2023
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