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search results for hawking |u:geometry.mrao.cam.ac.uk
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geometry.mrao.cam.ac.uk/author/j-pritchard/feed/
geometry.mrao.cam.ac.uk/author/j-pritchard/feed/17 Dec 2020: It follows that the Dirac sea of negative energy states is decaying, which may provide a physical contribution to Hawking radiation./p pA.N. -
geometry.mrao.cam.ac.uk/author/a-caceres/feed/
geometry.mrao.cam.ac.uk/author/a-caceres/feed/17 Dec 2020: It follows that the Dirac sea of negative energy states is decaying, which may provide a physical contribution to Hawking radiation./p pA.N. -
geometry.mrao.cam.ac.uk/author/s-r-dolan/feed/
geometry.mrao.cam.ac.uk/author/s-r-dolan/feed/17 Dec 2020: It follows that the Dirac sea of negative energy states is decaying, which may provide a physical contribution to Hawking radiation./p pA.N. -
geometry.mrao.cam.ac.uk/author/anl1000/feed/
geometry.mrao.cam.ac.uk/author/anl1000/feed/17 Dec 2020: It follows that the Dirac sea of negative energy states is decaying, which may provide a physical contribution to Hawking radiation./p pA.N. -
geometry.mrao.cam.ac.uk/author/stephen-gull/feed/
geometry.mrao.cam.ac.uk/author/stephen-gull/feed/17 Dec 2020: The Dirac equation is studied in a black hole background and provides a quick (though ultimately unsound) derivation of the Hawking temperature. -
geometry.mrao.cam.ac.uk/category/journal-paper/feed/
geometry.mrao.cam.ac.uk/category/journal-paper/feed/17 Dec 2020: It follows that the Dirac sea of negative energy states is decaying, which may provide a physical contribution to Hawking radiation./p pA.N.
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