Using methods of Quantum Field Theory in curved spacetime, the first order in hbar quantum corrections to the motion of a fluid in an acoustic black hole configuration are numerically computed. These corrections arise from the non linear backreaction of the emitted phonons. Time dependent (isolated system) and equilibrium configurations (hole in a sonic cavity) are both analyzed
We present the results of a numerical study of the superresonance effect of scalar fields incident o...
We propose a simple quantum field theoretical toy model for black-hole evaporation and study the bac...
Transonic accretion onto astrophysical objects is a unique example of analogue black hole realized i...
Using methods of Quantum Field Theory in curved spacetime, the first order in hbar quantum correctio...
The backreaction equations for the linearized quantum fluctuations in an acoustic black hole are giv...
The backreaction equations for the linearized quantum fluctuations in an acoustic black hole are giv...
We investigate the backreaction equations for an acoustic black hole formed in a Laval nozzle under ...
Using the action principle we first review how linear density perturbations (sound waves) in an Eule...
Using the action principle we first review how linear density perturbations (sound waves) in an Eule...
We study the process of decoherence induced by the presence of an environment in acoustic black hole...
Newtonian fluid dynamics allows the construction of acoustic metrics from which black hole configura...
6 pages, Proceedings of the ``Journees Relativistes'' Dublin, Sept. 2001The study of acoustic black ...
We discuss some general aspects of acoustic black holes. We begin by describing the associated forma...
We study the process of decoherence in acoustic black holes. We focus on the ion trap model proposed...
Classical black hole analogues (alternatively, the analogue systems) are fluid dynamical analogueof ...
We present the results of a numerical study of the superresonance effect of scalar fields incident o...
We propose a simple quantum field theoretical toy model for black-hole evaporation and study the bac...
Transonic accretion onto astrophysical objects is a unique example of analogue black hole realized i...
Using methods of Quantum Field Theory in curved spacetime, the first order in hbar quantum correctio...
The backreaction equations for the linearized quantum fluctuations in an acoustic black hole are giv...
The backreaction equations for the linearized quantum fluctuations in an acoustic black hole are giv...
We investigate the backreaction equations for an acoustic black hole formed in a Laval nozzle under ...
Using the action principle we first review how linear density perturbations (sound waves) in an Eule...
Using the action principle we first review how linear density perturbations (sound waves) in an Eule...
We study the process of decoherence induced by the presence of an environment in acoustic black hole...
Newtonian fluid dynamics allows the construction of acoustic metrics from which black hole configura...
6 pages, Proceedings of the ``Journees Relativistes'' Dublin, Sept. 2001The study of acoustic black ...
We discuss some general aspects of acoustic black holes. We begin by describing the associated forma...
We study the process of decoherence in acoustic black holes. We focus on the ion trap model proposed...
Classical black hole analogues (alternatively, the analogue systems) are fluid dynamical analogueof ...
We present the results of a numerical study of the superresonance effect of scalar fields incident o...
We propose a simple quantum field theoretical toy model for black-hole evaporation and study the bac...
Transonic accretion onto astrophysical objects is a unique example of analogue black hole realized i...