International audienceDisordered geometrical boundaries such as rough surfaces induce important modifications to the mode spectrum of the electromagnetic quantum vacuum, and may generate a disordered Casimir interaction between material bodies. In analogy to Anderson localization of waves induced by a random potential, here we show that the Casimir-Polder interaction between a cold atomic sample and a rough surface also produces localization phenomena. These effects, that represent a macroscopic manifestation of disorder in quantum vacuum, should be observable with Bose-Einstein condensates expanding in proximity of rough surfaces
International audienceAnderson localization, the absence of diffusion in disordered media, draws its...
Quantum mechanics teaches us that vacuum is not empty. Rather, it contains all kinds of virtual part...
Static and dynamical properties of atomic Bose-Einstein condensate in a random potential. The prese...
International audienceDisordered geometrical boundaries such as rough surfaces induce important modi...
In this thesis we address relevant problems of the physics of quantum disordered systems from a nume...
In this paper we discuss and review several aspects of the effect of boundary conditions and structu...
We develop a general approach to study the statistical fluctuations of the Casimir potential felt by...
The static Casimir effect describes an attractive force between two conducting plates, due to quantu...
doi:10.1088/1367-2630/8/10/230 Abstract. Disorder plays a crucial role in many systems particularly ...
We consider vacuum fluctuations of the quantum electromagnetic field in the presence of an infinite ...
In this work we study Anderson localization of quantum states in different kind of disordered media....
The static Casimir effect describes an attractive force between two conducting plates, due to quantu...
The phenomenon of localization of the electronic wave function in a random medium can be regarded as...
14 pages, 1 figure, to appear in Phys. Rev. AWe discuss the effective interactions between two local...
We propose a definitive test of whether plates involved in Casimir experiments should be modeled wit...
International audienceAnderson localization, the absence of diffusion in disordered media, draws its...
Quantum mechanics teaches us that vacuum is not empty. Rather, it contains all kinds of virtual part...
Static and dynamical properties of atomic Bose-Einstein condensate in a random potential. The prese...
International audienceDisordered geometrical boundaries such as rough surfaces induce important modi...
In this thesis we address relevant problems of the physics of quantum disordered systems from a nume...
In this paper we discuss and review several aspects of the effect of boundary conditions and structu...
We develop a general approach to study the statistical fluctuations of the Casimir potential felt by...
The static Casimir effect describes an attractive force between two conducting plates, due to quantu...
doi:10.1088/1367-2630/8/10/230 Abstract. Disorder plays a crucial role in many systems particularly ...
We consider vacuum fluctuations of the quantum electromagnetic field in the presence of an infinite ...
In this work we study Anderson localization of quantum states in different kind of disordered media....
The static Casimir effect describes an attractive force between two conducting plates, due to quantu...
The phenomenon of localization of the electronic wave function in a random medium can be regarded as...
14 pages, 1 figure, to appear in Phys. Rev. AWe discuss the effective interactions between two local...
We propose a definitive test of whether plates involved in Casimir experiments should be modeled wit...
International audienceAnderson localization, the absence of diffusion in disordered media, draws its...
Quantum mechanics teaches us that vacuum is not empty. Rather, it contains all kinds of virtual part...
Static and dynamical properties of atomic Bose-Einstein condensate in a random potential. The prese...