Open Access.We analyze Hawking evaporation of the Callan-Giddings-Harvey-Strominger black holes from a quantum geometry perspective and show that information is not lost, primarily because the quantum space-time is sufficiently larger than the classical. Using suitable approximations to extract physics from quantum space-times we establish that (i) the future null infinity of the quantum space-time is sufficiently long for the past vacuum to evolve to a pure state in the future, (ii) this state has a finite norm in the future Fock space, and (iii) all the information comes out at future infinity; there are no remnants
It was recently argued in [1] that black hole complementarity strains the basic rules of quantum inf...
We describe the black hole evaporation process driven by the dynamical evolution of the quantum grav...
A Black-hole is an astronomical entity which possesses infinite density at its gravitational singula...
Open Access. Sixth International Conference on Gravitation and Cosmology, IUCAA, Pune,We review the ...
The formation and evaporation of a black hole can be viewed as a scattering process in Quantum Gravi...
We study information retrieval from evaporating black holes, assuming that the internal dynamics of ...
Can quantum-information theory shed light on black-hole evaporation? By entangling the in-fallen mat...
We present a detailed analysis of results from a new study of the quantum evaporation of Callan-Gidd...
We incorporate elements of the recently discovered exact solutions of the quantum constraints of loo...
We show that the apparent horizon and the region near r = 0 of an evaporating charged, rotating blac...
It has been shown that the quantum state of the graviton field outside a black hole horizon carries ...
A paradigm describing black hole evaporation in non-perturbative quantum gravity is developed by com...
A coarse-grained description for the formation and evaporation of a black hole is given within the f...
We construct and discuss the form of the (effective) spacetime geometry inside a black hole undergoi...
A Black-hole is an astronomical entity which possesses infinite density at its gravitational singula...
It was recently argued in [1] that black hole complementarity strains the basic rules of quantum inf...
We describe the black hole evaporation process driven by the dynamical evolution of the quantum grav...
A Black-hole is an astronomical entity which possesses infinite density at its gravitational singula...
Open Access. Sixth International Conference on Gravitation and Cosmology, IUCAA, Pune,We review the ...
The formation and evaporation of a black hole can be viewed as a scattering process in Quantum Gravi...
We study information retrieval from evaporating black holes, assuming that the internal dynamics of ...
Can quantum-information theory shed light on black-hole evaporation? By entangling the in-fallen mat...
We present a detailed analysis of results from a new study of the quantum evaporation of Callan-Gidd...
We incorporate elements of the recently discovered exact solutions of the quantum constraints of loo...
We show that the apparent horizon and the region near r = 0 of an evaporating charged, rotating blac...
It has been shown that the quantum state of the graviton field outside a black hole horizon carries ...
A paradigm describing black hole evaporation in non-perturbative quantum gravity is developed by com...
A coarse-grained description for the formation and evaporation of a black hole is given within the f...
We construct and discuss the form of the (effective) spacetime geometry inside a black hole undergoi...
A Black-hole is an astronomical entity which possesses infinite density at its gravitational singula...
It was recently argued in [1] that black hole complementarity strains the basic rules of quantum inf...
We describe the black hole evaporation process driven by the dynamical evolution of the quantum grav...
A Black-hole is an astronomical entity which possesses infinite density at its gravitational singula...