Bipartite entanglement for states of a noninteracting bosonic or fermionic field in the spacetime of a spherically symmetric black hole of Einstein-Gauss-Bonnet gravity is investigated. Although the initial state is chosen to be maximally entangled as the Bell states, the Hawking-Unruh effect causes the state to be mixed and the entanglement degrades, but with different asymptotic behaviors for the fermionic and bosonic fields. The Gauss-Bonnet term with positive alpha can play an antigravitation role and so this causes a decrease in the Hawking-Unruh effect and consequently reduces the entanglement degradation. On the other hand, the suggested higher dimensions for the spacetime lead to increased entanglement degradation by increasing the dimension. There is a dramatic difference between the behaviors of the entanglement in terms of the radius of the horizon for a five-dimensional black hole and that for higher dimensional black holes. Both bosonic and fermionic fields entanglements are treated beyond the single-mode approximation. Also, the cases where the accelerating observers located at regions near and far from the event horizon of black hole are studied separately.
机构:
Bauman Moscow State Tech Univ, 2 Ya Baumanskaya Ul 5, Moscow 105005, RussiaBauman Moscow State Tech Univ, 2 Ya Baumanskaya Ul 5, Moscow 105005, Russia
Fomin, I. V.
Chervon, S. V.
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Ulyanovsk State Pedag Univ, 100 Years VI Lenins Birthday Sq, Ulyanovsk 432071, Russia
Univ KwaZulu Natal, Sch Math Stat & Comp Sci, Astrophys & Cosmol Res Unit, Private Bag X54 001, ZA-4000 Durban, South AfricaBauman Moscow State Tech Univ, 2 Ya Baumanskaya Ul 5, Moscow 105005, Russia