Light Clocks and the Clock Hypothesis

Foundations of Physics 43 (11):1369-1383 (2013)
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Abstract

The clock hypothesis of relativity theory equates the proper time experienced by a point particle along a timelike curve with the length of that curve as determined by the metric. Is it possible to prove that particular types of clocks satisfy the clock hypothesis, thus genuinely measure proper time, at least approximately? Because most real clocks would be enormously complicated to study in this connection, focusing attention on an idealized light clock is attractive. The present paper extends and generalized partial results along these lines with a theorem showing that, for any timelike curve in any spacetime, there is a light clock that measures the curve’s length as accurately and regularly as one wishes

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Samuel C. Fletcher
University of Minnesota

Citations of this work

Background Independence, Diffeomorphism Invariance, and the Meaning of Coordinates.Oliver Pooley - 2016 - In Dennis Lehmkuhl, Gregor Schiemann & Erhard Scholz, Towards a Theory of Spacetime Theories. New York, NY: Birkhauser.
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Conservation, inertia, and spacetime geometry.James Owen Weatherall - 2017 - Studies in History and Philosophy of Science Part B: Studies in History and Philosophy of Modern Physics 67:144-159.

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References found in this work

Philosophy of Physics: Space and Time.Tim Maudlin - 2012 - Princeton University Press.
Relativity: the general theory.John Lighton Synge (ed.) - 1960 - New York,: Interscience Publishers.
Time and the space-traveller.Leslie Marder - 1971 - London,: Allen & Unwin.

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