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Temperature at Horizon in de Sitter Spacetime
It is found that there is no period in the imaginary Beltrami-time of the de
Sitter spacetime with Beltrami metric and that the `surface-gravity' in view of
inertial observers in de Sitter spacetime is zero! They show that the horizon
might be at zero temperature in de Sitter spacetime and that the thermal
property of the horizon in the de Sitter spacetime with a static metric should
be analogous to that of the Rindler horizon in Minkowski spacetime.Comment: 7 pages, 1 figur
Black Hole Mass Formula Is a Vanishing Noether Charge
The Noether current and its variation relation with respect to diffeomorphism
invariance of gravitational theories have been derived from the horizontal
variation and vertical-horizontal bi-variation of the Lagrangian, respectively.
For Einstein's GR in the stationary, axisymmetric black holes, the mass formula
in vacuum can be derived from this Noether current although it definitely
vanishes. This indicates that the mass formula of black holes is a vanishing
Noether charge in this case. The first law of black hole thermodynamics can
also be derived from the variation relation of this vanishing Noether current.Comment: 7 page
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