A field in the vacuum state, which is in principle separable, can evolve to an entangled state in a dynamical gravitational collapse. We will study, quantify, and discuss the origin of this entanglement, showing that it could even reach the maximal entanglement limit for low frequencies or very small black holes, with consequences in micro-black hole formation and the final stages of evaporating black holes. This entanglement provides quantum information resources between the modes in the asymptotic future (thermal Hawking radiation) and those which fall to the event horizon. We will also show that fermions are more sensitive than bosons to this quantum entanglement generation. This fact could be helpful in finding experimental evidence of ...
We analyse the evolution of the entanglement of a non-trivial initial quantum field state (which, fo...
We show that, in order to preserve the equivalence principle until late times in unitarily evaporati...
A coherent picture of the quantum mechanics of a collapse-formed, evaporating black hole is presente...
We study the dynamics of vacuum entanglement in the process of gravitational collapse and subsequent...
We calculate, using our recently proposed semiclassical framework, the quantum state of the Hawking ...
We calculate, using our recently proposed semiclassical framework, the quantum state of the Hawking ...
We calculate, using our recently proposed semiclassical framework, the quantum state of the Hawking ...
We calculate, using our recently proposed semiclassical framework, the quantum state of the Hawking ...
We study the dynamics of vacuum entanglement in the process of gravitational collapse and subsequent...
We calculate, using our recently proposed semiclassical framework, the quantum state of the Hawking ...
We calculate, using our recently proposed semiclassical framework, the quantum state of the Hawking ...
The black hole information paradox is a contradiction between fundamental principles which has puzzl...
Almheiri et al. have emphasized that otherwise reasonable beliefs about black hole evaporation are i...
Almheiri et al. have emphasized that otherwise reasonable beliefs about black hole evaporation are i...
Almheiri et al. have emphasized that otherwise reasonable beliefs about black hole evaporation are i...
We analyse the evolution of the entanglement of a non-trivial initial quantum field state (which, fo...
We show that, in order to preserve the equivalence principle until late times in unitarily evaporati...
A coherent picture of the quantum mechanics of a collapse-formed, evaporating black hole is presente...
We study the dynamics of vacuum entanglement in the process of gravitational collapse and subsequent...
We calculate, using our recently proposed semiclassical framework, the quantum state of the Hawking ...
We calculate, using our recently proposed semiclassical framework, the quantum state of the Hawking ...
We calculate, using our recently proposed semiclassical framework, the quantum state of the Hawking ...
We calculate, using our recently proposed semiclassical framework, the quantum state of the Hawking ...
We study the dynamics of vacuum entanglement in the process of gravitational collapse and subsequent...
We calculate, using our recently proposed semiclassical framework, the quantum state of the Hawking ...
We calculate, using our recently proposed semiclassical framework, the quantum state of the Hawking ...
The black hole information paradox is a contradiction between fundamental principles which has puzzl...
Almheiri et al. have emphasized that otherwise reasonable beliefs about black hole evaporation are i...
Almheiri et al. have emphasized that otherwise reasonable beliefs about black hole evaporation are i...
Almheiri et al. have emphasized that otherwise reasonable beliefs about black hole evaporation are i...
We analyse the evolution of the entanglement of a non-trivial initial quantum field state (which, fo...
We show that, in order to preserve the equivalence principle until late times in unitarily evaporati...
A coherent picture of the quantum mechanics of a collapse-formed, evaporating black hole is presente...