J. Brian Pitts
University of Cambridge
72 Papers
415 Citations
J. Brian Pitts is an academic researcher from University of Cambridge. The author has contributed to research in topics: General relativity & Einstein. The author has an hindex of 20, co-authored 67 publications. Previous affiliations of J. Brian Pitts include University of Notre Dame & University of Texas at Austin.
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Papers
Change in Hamiltonian General Relativity from the Lack of a Time-like Killing Vector Field
TL;DR: In this article, the Earman-Maudlin stalemate is resolved: the Hamiltonian formalism is helpful, and, suitably reformed, it does not have absurd consequences for change.
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Null Cones and Einstein's Equations in Minkowski Spacetime
TL;DR: In this paper, a generalized eigenvector formalism based on the Segre classification of symmetric rank 2 tensors with respect to a Lorentzian metric is used to solve the kinematical problem.
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Why the Big Bang Singularity Does Not Help the Kalām Cosmological Argument for Theism
TL;DR: The Big Bang singularity provides little or no evidence for creation in the finite past and hence for theism Whether one dismisses singularities or takes them seriously, physics licenses no first moment of (space-)time as discussed by the authors.
Absolute objects and counterexamples: Jones–Geroch dust, Torretti constant curvature, tetrad-spinor, and scalar density
TL;DR: In this paper, Torretti's example involving constant curvature spaces is shown to have an absolute object on Anderson's analysis, i.e., the conformal spatial metric density.
The Nontriviality of Trivial General Covariance: How Electrons Restrict 'Time' Coordinates, Spinors (Almost) Fit into Tensor Calculus, and 7/16 of a Tetrad Is Surplus Structure
TL;DR: In this article, it is shown how to use density-weighted Ogievetsky-Polubarinov spinors coupled to the 9-component symmetric square root of the part of the metric that fixes null cones.
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