
Quantum gravity is concerned with unifying Einstein's general theory of relativity with quantum theory into a single theoretical framework. At Perimeter Institute, researchers are actively pursuing a number of approaches to this problem including loop quantum gravity, spin foam models, asymptotic safety, emergent gravity, string theory, and causal set theory. We are also particularly interested in experimental implications of these different proposals. As the aim is a unification of the laws of physics into a single theory, the search for quantum gravity overlaps with other areas such as cosmology, particle physics and the foundations of quantum theory.
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Super Cartan geometry, loop quantum supergravity and applications
Konstantin Eder University of Erlangen-Nuremberg
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q- deformed LQG with a cosmological constant
Qiaoyin Pan Florida Atlantic University
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Quantum gravity Vs unimodular quantum gravity
Antonio Pereira Universidade Federal Fluminense
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The effective action of superrotation modes
Jakob Salzer Harvard University
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Emergent cosmology from tensorial group field theories for quantum gravity
Daniele Oriti Complutense University of Madrid
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Evolving quantum state for black holes
Steve Giddings University of California, Santa Barbara
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Nonlocal cosmological models from infrared quantum gravity effects
Enis Belgacem Utrecht University
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Matter-driven phase transition in lattice quantum gravity
Andrzej Gorlich Jagiellonian University
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Getting hot without accelerating: vacuum thermal effects from conformal quantum mechanics
Michele Arzano University of Naples Federico II
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Underground tests of Quantum Mechanics: Gravity-related and CSL wave function collapse models
Catalina Curceanu National Institute for Nuclear Physics