The Coriolis field
arXiv:1511.02458 · doi:10.1119/1.4938056
Abstract
We present a pedagogical discussion of the Coriolis field, emphasizing its not-so-well-understood aspects. We show that this field satisfies the field equations of the so-called Newton-Cartan theory, a generalization of Newtonian gravity that is covariant under changes of arbitrarily rotating and accelerated frames. Examples of solutions of this theory are given, including the Newtonian analogue of the Gödel universe. We discuss how to detect the Coriolis field by its effect on gyroscopes, of which the gyrocompass is an example. Finally, using a similar framework, we discuss the Coriolis field generated by mass currents in general relativity, and its measurement by the Gravity Probe B and LAGEOS/LARES experiments.
9 pages, 2 figures. Accepted for publication in the American Journal of Physics
References in corpus (1)
Cited by in corpus (8)
- Gravitational Magnus effect
- Gravitomagnetism and the significance of the curvature scalar invariants
- Gravitomagnetism in the Lewis cylindrical metrics
- On the Lévy-Leblond-Newton equation and its symmetries: a geometric view
- Non zero Coriolis field in Ehlers' Frame Theory
- Frame-dragging: meaning, myths, and misconceptions
- Geometric studies of the interplay between spin and gravity
- On Twisted Spacetimes: a new class of Galilean cosmological models