Entanglement in holographic dark energy models (CROSBI ID 175850)
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Podaci o odgovornosti
Horvat, Raul
engleski
Entanglement in holographic dark energy models
We study a process of equilibration of holographic dark energy (HDE) with the cosmic horizon around the dark-energy dominated epoch. This process is characterized by a huge amount of information conveyed across the horizon, filling thereby a large gap in entropy between the system on the brink of experiencing a sudden collapse to a black hole and the black hole itself. At the same time, even in the absence of interaction between dark matter and dark energy, such a process marks a strong jump in the entanglement entropy, measuring the quantum-mechanical correlations between the horizon and its interior. Although the effective quantum field theory (QFT) with a peculiar relationship between the UV and IR cutoffs, a framework underlying all HDE models, may formally account for such a huge shift in the number of distinct quantum states, we show that the scope of such a framework becomes tremendously restricted, devoid virtually any application in other cosmological epochs or particle-physics phenomena. The problem of negative entropies for the non-phantom stuff is also discussed.
holographic dark energy ; entanglement entropy
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Podaci o izdanju
693 (5)
2010.
596-599
objavljeno
0370-2693
1873-2445
10.1016/j.physletb.2010.09.014