Dark energy and quantum gravity

Author:

Berglund Per1,Hübsch Tristan2,Minić Djordje3

Affiliation:

1. Department of Physics and Astronomy, University of New Hampshire, Durham, NH 03824, USA

2. Department of Physics and Astronomy, Howard University, Washington, D.C. 20059, USA

3. Department of Physics, Virginia Tech, Blacksburg, VA 24061, USA

Abstract

Realizing dark energy and the observed de Sitter spacetime in quantum gravity has proven to be obstructed in almost every usual approach. We argue that additional degrees of freedom of the left- and right-movers in string theory and a resulting doubled, noncommutatively generalized geometric formulation thereof can lead to an effective model of dark energy consistent with de Sitter spacetime. In this approach, the curvature of the canonically conjugate dual space provides for the dark energy inducing a positive cosmological constant in the observed spacetime, whereas the size of the above dual space is the gravitational constant in the same observed de Sitter spacetime. As a hallmark relation owing to a unique feature of string theory which relates short distances to long distances, the cosmological constant scale, the Planck scale and the effective TeV-sized particle physics scale must satisfy a see-saw-like formula — precisely the generic prediction of certain stringy cosmic brane type models.

Publisher

World Scientific Pub Co Pte Lt

Subject

Space and Planetary Science,Astronomy and Astrophysics,Mathematical Physics

Cited by 7 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. A unified cosmological dark sector from a Bose–Einstein condensate;Physics of the Dark Universe;2023-12

2. Axionic Dark Matter in a Bi-Metric Universe;Universe;2023-09-27

3. Dark matter in a bi-metric universe;International Journal of Modern Physics D;2023-06-19

4. On de Sitter spacetime and string theory;International Journal of Modern Physics D;2023-06-15

5. Quantum gravity phenomenology at the dawn of the multi-messenger era—A review;Progress in Particle and Nuclear Physics;2022-07

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