An exact correspondence between a black hole and an accelerating mirror is demonstrated. It is shown that for a massless minimally coupled scalar field the same Bogolubov coefficients connecting the "in" and "out" states occur for a (1+1)D flat spacetime with a particular perfectly reflecting accelerating boundary trajectory and a (1+1)D curved spacetime in which a null shell collapses to form a black hole. Generalization of the latter to the (3+1)D case is discussed. The spectral dynamics is computed in both (1+1)-dimensional spacetimes along with the energy flux in the spacetime with a mirror. It is shown that the approach to equilibrium is monotonic, asymmetric in terms of the rate, and there is a specific time which characterizes the sy...
In this talk I show how, in Lema itre coordinates, one can canonically quantize a massless scalar el...
This thesis develops three main topics. First, the moving mirror model is examined where particle an...
Abstract An accelerated boundary correspondence (i.e. a flat spacetime accelerating m...
The question is examined of a mirror which starts from rest and either (i) accelerates for some time...
Motivated by the fact that the null shell of a collapsing black hole can be described by a perfectly...
A new solution of a unitary moving mirror is found to produce nite energy and emit thermal radiatio...
Energetic Cosmos Laboratory. ECL PublicationsRadiation from accelerating mirrors in a Minkowski spac...
A simple quantum mechanical model of $N$ free scalar fields interacting with a dynamical moving mirr...
Radiation from accelerating mirrors in a Minkowski spacetime provides insights into the nature of ho...
The Callan-Giddings-Harvey-Strominger black hole has a spectrum and temperature that correspond to a...
The Callan-Giddings-Harvey-Strominger black hole has a spectrum and temperature that correspond to a...
Energetic Cosmos Laboratory. ECL PublicationsThe analogy between black hole radiation and accelerati...
We argue that the region behind the horizon of a one-sided black hole can be probed by an analogue o...
We analyze the flow of energy and entropy emitted by a class of moving mirror trajectories which pro...
The accelerated-mirror results are applied to a black hole. As a consequence the hole produces black...
In this talk I show how, in Lema itre coordinates, one can canonically quantize a massless scalar el...
This thesis develops three main topics. First, the moving mirror model is examined where particle an...
Abstract An accelerated boundary correspondence (i.e. a flat spacetime accelerating m...
The question is examined of a mirror which starts from rest and either (i) accelerates for some time...
Motivated by the fact that the null shell of a collapsing black hole can be described by a perfectly...
A new solution of a unitary moving mirror is found to produce nite energy and emit thermal radiatio...
Energetic Cosmos Laboratory. ECL PublicationsRadiation from accelerating mirrors in a Minkowski spac...
A simple quantum mechanical model of $N$ free scalar fields interacting with a dynamical moving mirr...
Radiation from accelerating mirrors in a Minkowski spacetime provides insights into the nature of ho...
The Callan-Giddings-Harvey-Strominger black hole has a spectrum and temperature that correspond to a...
The Callan-Giddings-Harvey-Strominger black hole has a spectrum and temperature that correspond to a...
Energetic Cosmos Laboratory. ECL PublicationsThe analogy between black hole radiation and accelerati...
We argue that the region behind the horizon of a one-sided black hole can be probed by an analogue o...
We analyze the flow of energy and entropy emitted by a class of moving mirror trajectories which pro...
The accelerated-mirror results are applied to a black hole. As a consequence the hole produces black...
In this talk I show how, in Lema itre coordinates, one can canonically quantize a massless scalar el...
This thesis develops three main topics. First, the moving mirror model is examined where particle an...
Abstract An accelerated boundary correspondence (i.e. a flat spacetime accelerating m...