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We start by surveying the history of the idea of a fundamental conservation law and briefly examine the role conservation laws play in different classical contexts.
A suggested interpretation of quantum theory in terms of ‘hidden’ variables
D. Bohm · 1952
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‘Relative state’ formulation of quantum mechanics
H. Everett · 1957
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Apparent weight of photons
R. V. Pound and G. A. Rebka · 1960
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Historical Roots of the Principle of Conservation of Energy
E. N. Hiebert · 1962
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On the problem of hidden variables in quantum mechanics
J. S. Bell · 1966
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The problem of hidden variables in quantum mechanics
S. Kochen and E. Specker · 1967
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The concept of energy and its early historical development
R. B. Lindsay · 1971
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The discovery of the conservation of energy
Y. Elkana · 1974
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The Large Scale Structure of Space-Time
S. W. Hawking and G. F. R. Ellis · 1975
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The necessity of quantizing the gravitational field
K. Eppley and E. Hannah · 1977
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Indirect evidence for quantum gravity
D. N. Page and C. D. Geilker · 1981
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Energy, Force and Matter. The Conceptual Development of Nineteenth-Century Physics
P. H. Harman · 1982
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General Relativity
R. M. Wald · 1984
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Unified dynamics for microscopic and macroscopic systems
G. C. Ghirardi, A. Rimini, and T. Weber · 1986
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Combining stochastic dynamical state vector reduction with spontaneous localization
P. Pearle · 1989
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Conservation and non-conservation in general relativity
H. Bondi · 1990
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Quantum Mechanics and Experience
D. Z. Albert · 1992
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Bound state excitation, nucleon decay experiments, and models of wave function collapse
P. Pearle and E. Squires · 1994
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Quantum Field Theory in Curved Spacetime and Black Hole Thermodynamics
R. M. Wald · 1994
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Three measurement problems
T. Maudlin · 1995
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Towards a formal description of the collapse approach to the inflationary origin of the seeds of cosmic structure
A. Diez-Tejedor and D. Sudarsky · 2012
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Models of wave-function collapse, underlying theories, and experimental tests
A. Bassi, K. Lochan, S. Satin, T. Singh, and H. Ulbricht · 2013
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Matter density and relativistic models of wave function collapse
D. Bedingham, D. Dürr, G. C. Ghirardi, S. Goldstein, R. Tumulka, and N. Zanghì · 2014
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Physics and Necessity
O. Darrigol · 2014
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Can Bohmian mechanics be made relativistic?
D. Dürr, S. Goldstein, T. Norsen, W. Struyve, and N. Zanghì · 2014
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The Emergent Multiverse: Quantum Theory According To The Everett Interpretation
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D. Z. Albert and B. Loewer · 1996
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The Emperor’s New Mind: Concerning Computers, Minds, and the Laws of Physics
R. Penrose · 1999
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Why quantize gravity (or any other field for that matter)?
N. Huggett and C. Callender · 2001
Cited alongside, same era.
Is quantum gravity necessary?
J. Mattingly · 2005
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Why Epply and Hannah’s thought experiment fails
J. Mattingly · 2006
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A relativistic version of the Ghirardi-Rimini-Weber model
R. Tumulka · 2006
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D. Wallace · 2014
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Semi-classical approximations based on Bohmian mechanics
W. Struyve · 2015
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Dark energy as the weight of violating energy conservation
T. Josset, A. Perez, and D. Sudarsky · 2017
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Semi-quantum gravity and testing gravitational Bell non-locality
A. Kent · 2018
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The weight of collapse: dynamical reduction models in general relativistic contexts
E. Okon and D. Sudarsky · 2018
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A microscopic model for an emergent cosmological constant
A. Perez, D. Sudarsky, and J. D. Bjorken · 2018
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Bohmian quantum gravity and cosmology
N Pinto-Neto and W. Struyve · 2018
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On geometric objects, the non-existence of a gravitational stress-energy tensor, and the uniqueness of the einstein field equation
E. Curiel · 2019
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Towards a novel approach to semi-classical gravity
W. Struyve · 2019
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