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We elaborate on the new understanding of the cosmological constant and the gauge hierarchy problems in the context of string theory in its metastring formulation, based on the concepts of modular spacetime and Born geometry.
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L. Freidel, R. G. Leigh, and D. Minic, “Metastring Theory and Modular Space-time,”
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L. Freidel, R. G. Leigh, and D. Minic, “Modular spacetime,”
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P. Berglund, T. Hübsch, and D. Minic, “Exponential hierarchy from spacetime variable string vacua,”
2000
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S. Weinberg, “Models of Lepton and Quark Masses,”
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L. Freidel, R. G. Leigh, and D. Minic, “Intrinsic non-commutativity of closed string theory,”
2017
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L. Freidel, R. G. Leigh, and D. Minic, “Noncommutativity of closed string zero modes,”
2017
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L. Freidel, R. G. Leigh, and D. Minic, “Modular Spacetime and Metastring Theory,”
2017
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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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S. Abel and K. R. Dienes, “Calculating the Higgs mass in string theory,”
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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https://nebula.wsimg.com/44afe7e009f4c9854e6dc1b8887bdbc8?AccessKeyId=D5AC63041E00FF1ED0E8&disposition=0&alloworigin=1
J. D. Bjorken, “Masses and mixings of quarks and leptons.” Slides, last checked: Nov., 2022 · 2022
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P. Berglund, T. Hübsch, D. Mattingly, and D. Minic, “Gravitizing the Quantum,”
2022
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R. L. Workman
2022
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