It has long been recognized that emission of radiation from atoms is not an intrinsic property of individual atoms themselves, but it is largely affected by the characteristics of the photonic environment and by the collective interaction among the atoms. A general belief is that preventing full decay and/or decoherence requires the existence of dark states, i.e., dressed light-atom states that do not decay despite the dissipative environment. Here, we show that, contrary to such a common wisdom, decoherence suppression can be intermittently achieved on a limited time scale, without the need for any dark state, when the atom is coupled to a chiral ring environment, leading to a highly non-exponential staircase decay. This effect, that we re...
We review the use of quantum feedback for combatting the decoherence of Schroedinger-cat-like states...
We develop a theory describing the dynamics of quantum kicked rotators (modeling cold atoms in a pul...
The effect of decoherence, induced by spontaneous emission, on the dynamics of cold atoms periodical...
It has long been recognized that emission of radiation from atoms is not an intrinsic property of in...
We theoretically investigate basic properties of nonequilibrium steady states of periodically-driven...
Manipulation of quantum interference requires that the system under control remains coherent, avoidi...
We measure the decoherence of a spatially separated atomic superposition due to spontaneous photon s...
We show how an initially prepared quantum state of a radiation mode in a cavity can be preserved for...
We show how an initially prepared quantum state of a radiation mode in a cavity can be preserved for...
We present a scheme that is able to protect the quantum states of a cavity mode against the decoheri...
In light matter interfaces based on the Faraday effect quite a number of quantum information protoco...
We demonstrate how a time-dependent dissipative environment may be used as a tool for controlling th...
An open quantum system operated at the spectral singularities where dimensionality reduces, known as...
The population decay due to a small opening in an otherwise closed cavity supporting chaotic classic...
We study environmentally induced decoherence of an electromagnetic field in a homogeneous, linear, d...
We review the use of quantum feedback for combatting the decoherence of Schroedinger-cat-like states...
We develop a theory describing the dynamics of quantum kicked rotators (modeling cold atoms in a pul...
The effect of decoherence, induced by spontaneous emission, on the dynamics of cold atoms periodical...
It has long been recognized that emission of radiation from atoms is not an intrinsic property of in...
We theoretically investigate basic properties of nonequilibrium steady states of periodically-driven...
Manipulation of quantum interference requires that the system under control remains coherent, avoidi...
We measure the decoherence of a spatially separated atomic superposition due to spontaneous photon s...
We show how an initially prepared quantum state of a radiation mode in a cavity can be preserved for...
We show how an initially prepared quantum state of a radiation mode in a cavity can be preserved for...
We present a scheme that is able to protect the quantum states of a cavity mode against the decoheri...
In light matter interfaces based on the Faraday effect quite a number of quantum information protoco...
We demonstrate how a time-dependent dissipative environment may be used as a tool for controlling th...
An open quantum system operated at the spectral singularities where dimensionality reduces, known as...
The population decay due to a small opening in an otherwise closed cavity supporting chaotic classic...
We study environmentally induced decoherence of an electromagnetic field in a homogeneous, linear, d...
We review the use of quantum feedback for combatting the decoherence of Schroedinger-cat-like states...
We develop a theory describing the dynamics of quantum kicked rotators (modeling cold atoms in a pul...
The effect of decoherence, induced by spontaneous emission, on the dynamics of cold atoms periodical...