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Quantum Gravity

Group “Fundamental Interactions”

Quantum Gravity The quantum gravity team works on a major open question in fundamental physics: how to reconcile general relativity and quantum mechanics. Since gravity describes the dynamics of space-time, this amounts to studying the quantum behavior of time and space.

Loop quantum gravity (LQG) is a major approach aimed at answering this question. In this field, the CPT is at the very forefront, and the team works on the formal definition of the theory, its mathematical aspects, and its applications.

Among the formal developments, the group studies the properties of coherent semiclassical states, which describe quantum geometry, and develops a reformulation of the theory in terms of twistors, which should simplify its application.

The main applications are primordial cosmology and black hole physics. The objective of this research is to identify observable phenomena that could make it possible to test the theory. In the context of cosmology, LQG makes it possible to explore the region close to the initial singularity predicted by classical general relativity. The theory indicates that the current expansion phase of the universe was preceded by a phase of contraction.

LQG also allows the study of the high-curvature region inside black holes (the “Planck star”) and suggests that the central singularity is avoided thanks to quantum effects. The black hole thus becomes unstable: it can explode through a quantum tunneling process, similar to conventional nuclear decay. The team studies the signals produced in this way, which could correspond to observed phenomena such as very high-energy gamma rays or Fast Radio Bursts, possibly caused by explosions of primordial black holes. The quantum structure of space-time is also relevant for studying the thermal properties of black holes and the “information paradox”. The group is at the forefront of the analysis of these questions.

Team's directory

BRUNO Matteo

Post Ph.D.

Contact
DIAZ Juan-Manuel

Ph.D.

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DONA Pietro

Research teacher

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KRAJEWSKI Thomas

Research teacher

+33.4.91.26.95.53

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PEREZ Alejandro

Research teacher

Team leader « Quantum Gravity »

+33.4.91.26.97.98

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PIOVESAN Pierre

Ph.D.

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ROVELLI Carlo

Research teacher emeritus

+33.4.91.26.96.44

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SPEZIALE Simone

Researcher

Unit leader « Interactions fondamentales »

+33.4.91.26.95.47

Contact
SREERAM Gowrisankar

Ph.D.

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YAN Ruijue

Ph.D.

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Team's publications

Gravity as an $\mathfrak{su}(1, 1)$ gauge theory in four dimensions

Hongguang Liu, Karim Noui

Classical and Quantum Gravity, 2017, 34 (13), pp.135008. (10.1088/1361-6382/aa7348)

Journal articles


Quantum reduced loop gravity: extension to gauge vector field

Jakub Bilski, Emanuele Alesci, Francesco Cianfrani, Pietro Donà, Antonino Marcianò

Physical Review D, 2017, 95 (10), pp.104048. (10.1103/PhysRevD.95.104048)

Journal articles


Semiclassical analysis of black holes in loop quantum gravity: Modeling Hawking radiation with volume fluctuations

Pierre Heidmann, Hongguang Liu, Karim Noui

Physical Review D, 2017, 95 (4), pp.044015. (10.1103/PhysRevD.95.044015)

Journal articles


Dark Energy from Violation of Energy Conservation

Thibaut Josset, Alejandro Perez, Daniel Sudarsky

Physical Review Letters, 2017, 118 (2), pp.021102 (10.1103/PhysRevLett.118.021102)

Journal articles


Planck stars as observational probes of quantum gravity

Carlo Rovelli

Nature Astronomy, 2017, 1, pp.0065. (10.1038/s41550-017-0065)

Journal articles


Implications of a positive cosmological constant for general relativity

Abhay Ashtekar

Reports on Progress in Physics, 2017, 80 (10), pp.102901. (10.1088/1361-6633/aa7bb1)

Journal articles


Effective loop quantum cosmology as a higher-derivative scalar-tensor theory

David Langlois, Hongguang Liu, Karim Noui, Edward Wilson-Ewing

Classical and Quantum Gravity, 2017, 34 (22), pp.225004. (10.1088/1361-6382/aa8f2f)

Journal articles


Boosting Wigner's nj-symbols

Simone Speziale

Journal of Mathematical Physics, 2017, 58 (3), pp.032501 (10.1063/1.4977752)

Journal articles


Distinguishing f(R) theories from general relativity by gravitational lensing effect

Hongguang Liu, Xin Wang, Haida Li, Yongge Ma

European Physical Journal C: Particles and Fields, 2017, 77 (11), pp.723. (10.1140/epjc/s10052-017-5308-5)

Journal articles


Kerr Isolated Horizons in Ashtekar and Ashtekar-Barbero Connection Variables

Christian Röken

Gen.Rel.Grav., 2017, 49 (9), pp.114. (10.1007/s10714-017-2251-6)

Journal articles