Stationary extended frames in general relativity are considered. The requirement of stationarity allows one to treat the spacetime as a principal fibre bundle over the one-dimensional group of time translations. Over this bundle a connection form establishes the simultaneity between neighbouring events accordingly with the Einstein synchronization convention. The mathematics involved is that of gauge theories where a gauge choice is interpreted as a global simultaneity convention. Then simultaneity in non-stationary frames is investigated: it turns out to be described by a gauge theory in a fibre bundle without structure group, the curvature being given by the Fr¨olicher–Nijenhuis bracket of the connection. The Bianchi identity of this gauge theory is a differential relation between the vorticity field and the acceleration field. In order for the simultaneity connection to be principal, a necessary and sufficient condition on the 4-velocity of the observers is given.

Simultaneity and generalized connections in general relativity / Minguzzi, Ettore. - In: CLASSICAL AND QUANTUM GRAVITY. - ISSN 0264-9381. - STAMPA. - 20:(2003), pp. 2443-2456. [10.1088/0264-9381/20/11/332]

Simultaneity and generalized connections in general relativity

MINGUZZI, ETTORE
2003

Abstract

Stationary extended frames in general relativity are considered. The requirement of stationarity allows one to treat the spacetime as a principal fibre bundle over the one-dimensional group of time translations. Over this bundle a connection form establishes the simultaneity between neighbouring events accordingly with the Einstein synchronization convention. The mathematics involved is that of gauge theories where a gauge choice is interpreted as a global simultaneity convention. Then simultaneity in non-stationary frames is investigated: it turns out to be described by a gauge theory in a fibre bundle without structure group, the curvature being given by the Fr¨olicher–Nijenhuis bracket of the connection. The Bianchi identity of this gauge theory is a differential relation between the vorticity field and the acceleration field. In order for the simultaneity connection to be principal, a necessary and sufficient condition on the 4-velocity of the observers is given.
2003
20
2443
2456
Minguzzi, Ettore
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Utilizza questo identificatore per citare o creare un link a questa risorsa: https://hdl.handle.net/2158/310903
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