274 research outputs found
Coll Positioning systems: a two-dimensional approach
The basic elements of Coll positioning systems (n clocks broadcasting
electromagnetic signals in a n-dimensional space-time) are presented in the
two-dimensional case. This simplified approach allows us to explain and to
analyze the properties and interest of these relativistic positioning systems.
The positioning system defined in flat metric by two geodesic clocks is
analyzed. The interest of the Coll systems in gravimetry is pointed out.Comment: 6 pages; in Proc. Spanish Relativity Meeting ERE-2005, Oviedo (Spain
On the Leibniz bracket, the Schouten bracket and the Laplacian
The Leibniz bracket of an operator on a (graded) algebra is defined and some
of its properties are studied. A basic theorem relating the Leibniz bracket of
the commutator of two operators to the Leibniz bracket of them, is obtained.
Under some natural conditions, the Leibniz bracket gives rise to a (graded) Lie
algebra structure. In particular, those algebras generated by the Leibniz
bracket of the divergence and the Laplacian operators on the exterior algebra
are considered, and the expression of the Laplacian for the product of two
functions is generalized for arbitrary exterior forms
On the Bel radiative gravitational fields
We analyze the concept of intrinsic radiative gravitational fields defined by
Bel and we show that the three radiative types, N, III and II, correspond with
the three following different physical situations: {\it pure radiation}, {\it
asymptotic pure radiation} and {\it generic} (non pure, non asymptotic pure)
{\it radiation}. We introduce the concept of {\em observer at rest} with
respect to the gravitational field and that of {\em proper super-energy} of the
gravitational field and we show that, for non radiative fields, the minimum
value of the relative super-energy density is the proper super-energy density,
which is acquired by the observers at rest with respect to the field. Several
{\it super-energy inequalities} are also examined.Comment: 15 pages; no figures; v2: minor change
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