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Christopher Nolan's science fiction movie Interstellar offers a variety of opportunities for students in elementary courses on general relativity theory.
Homer G. Ellis, “Ether flow through a drainhole: a particle model in general relativity”, J. Math. Phys
1973
Earlier work this paper cites.
Section 21.1 of Charles W. Misner, Kip S. Thorne and John Archibald Wheeler, Gravitation (W. H. Freeman, San Francisco, 1973)
1973
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J. F. Blinn and M. E. Newell, “Texture and reflection in computer generated images,” Communications of the ACM
1976
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Carl Sagan, Contact
1985
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Michael S. Morris and Kip S. Thorne, “Wormholes in spacetime and their use for interstellar travel: A tool for teaching general relativity,” Am. J. Phys
1988
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Michael S. Morris, Kip S. Thorne, and Ulvi Yurtsever, “Wormholes, time machines, and the weak energy condition,” Phys. Rev. Lett
1988
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James B. Hartle, Gravity: An Introduction to Einstein’s General Relativity
2003
Cited alongside, same era.
Thomas Müller, “Visual appearance of a Morris-Thorne-Wormhole,” ÊÊ Am. J. Phys
2004
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John L. Friedman and Atsushi Higuchi “Topological censorship and chronology protection,” Annalen Phys
2006
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Francisco S. N. Lobo “Exotic solutions in general relativity: traversable wormholes and ‘warp drive’ spacetimes,” Classical and Quantum Gravity Research 5 Progress
2008
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M. Bartelmann “Gravitational lensing,” Class. Quant. Grav
2010
Cited alongside, same era.
See, e.g., chapter 13 of The Science of Interstellar [
Allen Everett and Thomas Roman, Time Travel and Warp Drives
2012
Later among the works it cites.
2012
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Interstellar
2014
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Kip Thorne, The Science of Interstellar
2014
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Oliver James, Eugénie von Tunzelmann, Paul Franklin, and Kip S. Thorne, “Gravitational lensing by spinning black holes in astrophysics, and in the movie Interstellar
2015
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Cited in the paper.
Fifteen years later, Morris and Thorne [ 3 ] wrote down this same metric, among others, and being unaware of Ellis’s paper, failed to attribute it to him, for which they apologize. Regretably, it is sometimes called the Morris-Thorne wormhole metric
Cited in the paper.
This is the same as Eq. (7.46b) of Hartle, [ 11 ] where, however, our ℓ \ell is denoted ρ \rho
Cited in the paper.
See the technical notes for chapter 15 of The Science of Interstellar , [ 5 ] pages 294–295
Cited in the paper.
From the embedding equation ( 6
Cited in the paper.
Mattias Malmer, http://apod.nasa.gov/apod/ap041225.html
Cited in the paper.
Richard H. Price and Kip S. Thorne, “Superhamiltonian for geodesic motion and its power in numerical computations,” Amer. J. Phys
Cited in the paper.