English

Holography, Quantum Geometry, and Quantum Information Theory

General Relativity and Quantum Cosmology 2015-06-25 v3 Astrophysics Condensed Matter High Energy Physics - Theory Mathematical Physics math.MP Quantum Physics

Abstract

We interpret the Holographic Conjecture in terms of quantum bits (qubits). N-qubit states are associated with surfaces that are punctured in N points by spin networks' edges labeled by the spin-1/2 representation of SU(2), which are in a superposed quantum state of spin "up" and spin "down". The formalism is applied in particular to de Sitter horizons, and leads to a picture of the early inflationary universe in terms of quantum computation. A discrete micro-causality emerges, where the time parameter is being defined by the discrete increase of entropy. Then, the model is analysed in the framework of the theory of presheaves (varying sets on a causal set) and we get a quantum history. A (bosonic) Fock space of the whole history is considered. The Fock space wavefunction, which resembles a Bose-Einstein condensate, undergoes decoherence at the end of inflation. This fact seems to be responsible for the rather low entropy of our universe.

Keywords

Cite

@article{arxiv.gr-qc/9907063,
  title  = {Holography, Quantum Geometry, and Quantum Information Theory},
  author = {P. A. Zizzi},
  journal= {arXiv preprint arXiv:gr-qc/9907063},
  year   = {2015}
}

Comments

41 pages. Typos corrected, minor changes, references added. Contribution to the 8th UK Foundations of Physics Meeting, 13-17 September, 1999, Imperial College, London, UK replaced corrupted ps file with PDF file

R2 v1 2026-07-22T12:57:03.342Z