On the Holografic Bound in Newtonian Cosmology
[EN] The holographic principle sets an upper bound on the total (Boltzmann) entropy content of the Universe at around 10123kB (kB being Boltzmann¿s constant). In this work we point out the existence of a remarkable duality between nonrelativistic quantum mechanics on the one hand, and Newtonian cosm...
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Zusammenfassung: | [EN] The holographic principle sets an upper bound on the total (Boltzmann) entropy content of
the Universe at around 10123kB (kB being Boltzmann¿s constant). In this work we point out the existence
of a remarkable duality between nonrelativistic quantum mechanics on the one hand, and Newtonian
cosmology on the other. Specifically, nonrelativistic quantum mechanics has a quantum probability fluid
that exactly mimics the behaviour of the cosmological fluid, the latter considered in the Newtonian
approximation. One proves that the equations governing the cosmological fluid (the Euler equation
and the continuity equation) become the very equations that govern the quantum probability fluid
after applying the Madelung transformation to the Schroedinger wavefunction. Under the assumption
that gravitational equipotential surfaces can be identified with isoentropic surfaces, this model
allows for a simple computation of the gravitational entropy of a Newtonian Universe. In a first
approximation, we model the cosmological fluid as the quantum probability fluid of free Schroedinger
waves. We find that this model Universe saturates the holographic bound. As a second approximation,
we include the Hubble expansion of the galaxies. The corresponding Schroedinger waves lead to a
value of the entropy lying three orders of magnitude below the holographic bound. Current work
on a fully relativistic extension of our present model can be expected to yield results in even better
agreement with empirical estimates of the entropy of the Universe.
This research was supported by grant no. ENE2015-71333-R (Spain).
Isidro San Juan, JM.; Fernández De Córdoba, P. (2018). On the Holografic Bound in Newtonian Cosmology. Entropy. 20(83):1-8. https://doi.org/10.3390/e20020083 |
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