most citedThe holographic solution - Why general relativity must be understood in terms of strings

6 citations · 21 across the 7 of their papers we have counts for

collaborators

7 papers

gr-qc20045 cited

Are we living in a string-dominated universe?

Michael Petri

The holographic solution is a new exact solution to the Einstein field equations. It describes a compact self-gravitating object with properties similar to a black hole. Its entrop…

gr-qc20045 cited

On the origin of the matter-antimatter asymmetry in self-gravitating systems at ultra-high temperatures

Michael Petri

It is shown, that self-gravitating systems can be classified by a dimensionless constant positive number , which can be determined from the (global) values for the entr…

gr-qc2004

On the thermodynamic origin of the Hawking entropy and a measurement of the Hawking temperature

Michael Petri

In the spherically symmetric case the Einstein field equations take on their simplest form for a matter-density rho = 1 / (8 pi r^2), from which a radial metric coefficient g_{rr}…

gr-qc20046 cited

The holographic solution - Why general relativity must be understood in terms of strings

Michael Petri

This paper is a significantly expanded version of gr-qc/0306066. It discusses the geometric properties of the so called holographic solution, an exact, spherically symmetric soluti…

gr-qc2003

The holostar - a self-consistent model for a compact self-gravitating object

Michael Petri

The holostar is an exact spherically symmetric solution to the field equations of general relativity with anisotropic interior pressure. Its properties are similar to a black hole.…

gr-qc2003

Charged holostars

Michael Petri

A charged holostar is an exact solution of the Einstein field equations. Its interior matter distribution rho = 1 / (8 pi r^2) is singularity free with an overall string equation o…