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Institute of Theoretical Physics · Faculty of Mathematics and Physics, Charles University

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Article

Rotospheres in Stationary Axisymmetric Spacetimes

Semerák, O.

Ann. Phys. 263(1), 133-152 (1998)

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Abstract

Rotospheres are regions in spacetime where dynamics of angular motion may be related to kinematical parameters of the orbits in a counter-intuitive manner. Anomalous effects typically arise in rotation about a very compact source of gravity. We study them on circular orbits in a general asymptotically flat stationary axisymmetric spacetime. We relate the occurrence of counter-intuitive effects to the course of the limiting possible values of angular velocity and to that of the velocities of circular orbits nonaccelerated in a given direction, to conclude that rotospheres are always bounded by photon orbits. In the rotospheres, gyroscopes are shown to also precess in a "reverse" sense with respect to local important directions. The previously introduced "extremally accelerated observers" are presented as another natural generalization of "nonrotating" observers. A number of formulas are given that may be useful in analysing the test-particle dynamics and in the theory of measurements in stationary axisymmetric spacetimes; the formulae get especially simple in static fields. Also attached is a thorough list of references.

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BibTeX

@article{UTF751,
  author        = {Semerák, O.},
  title         = {{Rotospheres in Stationary Axisymmetric Spacetimes}},
  journal       = {Ann. Phys.},
  volume        = {263},
  number        = {1},
  pages         = {133-152},
  year          = {1998},
  month         = {2},
  doi           = {10.1006/aphy.1997.5756},
  url           = {https://www.sciencedirect.com/science/article/pii/S0003491697957560?via\%3Dihub},
}