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I provide a conceptually-focused presentation of `low-energy quantum gravity' (LEQG), the effective quantum field theory obtained from general relativity and which provides a well-defined theory of quantum gravity at energies well below the Planck scale.
The Structure of Scientific Revolutions
Kuhn, T. (1962) · 1962
Earlier work this paper cites.
Radiative corrections as the origin of spontaneous symmetry breaking
Coleman, S. and E. Weinberg (1973) · 1973
Earlier work this paper cites.
The path-integral approach to quantum gravity
Hawking, S. (1979) · 1979
Earlier work this paper cites.
Ultraviolet divergences in quantum theories of gravitation
Weinberg, S. (1979) · 1979
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Indirect evidence for quantum gravity
Page, D. N. and C. D. Geilker (1981) · 1981
Earlier work this paper cites.
How the Laws of Physics Lie
Cartwright, N. (1983) · 1983
Earlier work this paper cites.
Consistent histories and the interpretation of quantum mechanics
Griffiths, R. B. (1984) · 1984
Earlier work this paper cites.
General Relativity
Wald, R. M. (1984) · 1984
Earlier work this paper cites.
A universal master equation for the gravitational violations of quantum mechanics
Diósi, L. (1987) · 1987
Earlier work this paper cites.
Logical reformulation of quantum mechanics. i. foundations
Omnes, R. (1988) · 1988
Earlier work this paper cites.
Quantum Mechanics in the Light of Quantum Cosmology
Gell-Mann, M. and J. B. Hartle (1989) · 1989
Earlier work this paper cites.
The cosmological constant problem
Weinberg, S. (1989) · 1989
Earlier work this paper cites.
Consistent interpretations of quantum mechanics
Omnes, R. (1992) · 1992
Earlier work this paper cites.
Classical equations for quantum systems
Gell-Mann, M. and J. B. Hartle (1993) · 1993
Earlier work this paper cites.
Consistent interpretation of quantum mechanics using quantum trajectories
Griffiths, R. (1993) · 1993
Earlier work this paper cites.
A review of the decoherent histories approach to quantum mechanics
Halliwell, J. J. (1995) · 1995
Earlier work this paper cites.
An introduction to Quantum Field Theory
Peskin, M. E. and D. V. Schroeder (1995) · 1995
Earlier work this paper cites.
The Quantum Theory of Fields, Volume II: Modern Applications
Weinberg, S. (1995) · 1995
Earlier work this paper cites.
Supernovae and nucleosynthesis: an investigation of the history of matter, from the Big Bang to the present
Arnett, W. D. (1996) · 1996
Earlier work this paper cites.
On gravity’s role in quanutm state reduction
Penrose, R. (1996) · 1996
Earlier work this paper cites.
Relational quantum mechanics
Rovelli, C. (1996) · 1996
Earlier work this paper cites.
Introduction to the effective field theory description of gravity
Donoghue, J. F. (1997) · 1997
Earlier work this paper cites.
On the emergence of time in quantum gravity
Butterfield, J. and C. J. Isham (1999) · 1999
Earlier work this paper cites.
Why we don’t need quantum planetary dynamics: Decoherence and the correspondence principle for chaotic systems
Zurek, W. H. and J. P. Paz (1999) · 1999
Earlier work this paper cites.
Quantum theory needs no “interpretation”
Fuchs, C. and A. Peres (2000) · 2000
Earlier work this paper cites.
Spacetime and the philosophical challenge of quantum gravity
Butterfield, J. and C. Isham (2001) · 2001
Earlier work this paper cites.
Introduction
Callender, C. and N. Huggett (2001) · 2001
Earlier work this paper cites.
The cosmological constant
Carroll, S. (2001) · 2001
Earlier work this paper cites.
Gravitational collapse: The role of general relativity
Penrose, R. (1969) · 2002
Earlier work this paper cites.
The quantum vacuum and the cosmological constant problem
Rugh, S. E. and H. Zinkernagel (2002) · 2002
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Is the zero-point energy real?
Saunders, S. (2002) · 2002
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Relativity in the Global Positioning System
Ashby, N. (2003) · 2003
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Spacetime and Geometry: an Introduction to General Relativity
Carroll, S. (2003) · 2003
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Introduction to nonequilibrium quantum field theory
Berges, J. (2004) · 2004
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Quantum gravity in everyday life: General relativity as an effective field theory
Burgess, C. (2004) · 2004
Cited alongside, same era.
The Emergent Multiverse: Quantum Theory according to the Everett Interpretation
Wallace, D. (2012) · 2012
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The cosmological constant problem: Why it’s hard to get dark energy from microphysics
Burgess, C. (2013) · 2013
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Interpretive stratagies for deductively insecure theories: The case of early quantum electrodynamics
Li, B. (2013) · 2013
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Gravity related spontaneous wavefunction collapse in bulk matter
Diósi, L. (2014) · 2014
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Dynamics of the Standard Model (Second Edition)
Donoghue, J. F., E. Golowich, and B. R. Holstein (2014) · 2014
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An introduction to QBism with an application to the locality of quantum mechanics
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Hu, B., A. Roura, and E. Verdaguer (2004) · 2004
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Mattingly, J. (2005) · 2005
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An introduction to black holes, information and the string theory revolution: the Holographic Universe
Susskind, L. and J. Lindesay (2005) · 2005
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Enhanced polarization of the cosmic microwave background radiation from thermal gravitational waves
Bhattacharya, K., S. Mohanty, and A. Nautiyal (2006) · 2006
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The cosmological constant and the string landscape
Polchinski, J. (2006) · 2006
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Kiefer, C. (2007) · 2007
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Fuchs, C. A., N. D. Mermin, and R. Schack (2014) · 2014
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Mattingly, J. (2014) · 2014
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A short note on the boundary term for the Hilbert action
Padmanabhan, T. (2014) · 2014
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Penrose, R. (2014) · 2014
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Constraints on primordial gravitational waves using Planck, WMAP and new BICEP2/Keck observations through the 2015 season
Ade, P. et al. (2018) · 2015
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Lectures on the cosmological constant problem
Padilla, A. (2015) · 2015
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Stamp, P. (2015) · 2015
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Bonitz, M. (2016) · 2016
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Crowther, K. and N. Linnemann (2017) · 2017
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Healey, R. (2017) · 2017
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Koberinski, A. (2017) · 2017
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Marletto, C. and V. Vedral (2017) · 2017
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On the possibility of laboratory evidence for quantum superposition of geometries
Christodoulou, M. and C. Rovelli (2018) · 2018
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Screams for explanation: Finetuning and naturalness in the foundations of physics
Hossenfelder, S. (2018) · 2018
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Pinto-Neto, N. and W. Struyve (2018) · 2018
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Coleman Miller, M. and N. Yunes (2019) · 2019
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Brief review on scalar field dark matter models
Urena-Lopez, L. A. (2019) · 2019
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Schneider, M. D. (2020) · 2020
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Regularizing (away) vacuum energy
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