This paper presents a general master equation formalism for the interaction between traveling pulses of quantum radiation and localized quantum systems. Traveling fields populate a continuum of free-space radiation modes and the Jaynes-Cummings model, valid for a discrete eigenmode of a cavity, does not apply. We develop a complete input-output theory to describe the driving of quantum systems by arbitrary incident pulses of radiation and the quantum state of the field emitted into any desired outgoing temporal mode. Our theory is applicable to the transformation and interaction of pulses of radiation by their coupling to a wide class of material quantum systems. We discuss the most essential differences between quantum interactions with pu...
Abstract This paper develops a deterministic model of quantum mechanics as an accumulation-and-thres...
The paper presents a quantum mechanical treatment for analyzing the Smith-Purcell radiation generate...
This dissertation demonstrates the usefulness of exactly solvable quantum models in the investigatio...
How does a quantum system interact with a travelling pulse of quantum radiation, prepared, e.g., in ...
We present a formalism that accounts for the interaction of a local quantum system, such as an atom ...
The interaction of a propagating pulse of quantum radiation with a localized quantum system can be d...
We present a theoretical framework that describes a wave packet of light prepared in a state of defi...
International audiencePhotons are the elementary quantum excitations of the electromagnetic field. Q...
Rapid advances in quantum technology have made possible the control of quantum states of elementary ...
The Jaynes-Cummings (JC) model is a milestone in the theory of coherent interaction between a two-le...
In this dissertation, I explore interactions between matter and propagating light. The electromagnet...
This work is dedicated to the investigation of the temporal dynamics of stimulated emission. In cont...
We study the dynamics of a system consisting of a two-level atom and a quantum oscillator coupled by...
This paper aims to study the physical behaviour of radiation-matter interaction by introducing conce...
We present a canonical quantum theory of radiation in nonlinear media taking into account the effect...
Abstract This paper develops a deterministic model of quantum mechanics as an accumulation-and-thres...
The paper presents a quantum mechanical treatment for analyzing the Smith-Purcell radiation generate...
This dissertation demonstrates the usefulness of exactly solvable quantum models in the investigatio...
How does a quantum system interact with a travelling pulse of quantum radiation, prepared, e.g., in ...
We present a formalism that accounts for the interaction of a local quantum system, such as an atom ...
The interaction of a propagating pulse of quantum radiation with a localized quantum system can be d...
We present a theoretical framework that describes a wave packet of light prepared in a state of defi...
International audiencePhotons are the elementary quantum excitations of the electromagnetic field. Q...
Rapid advances in quantum technology have made possible the control of quantum states of elementary ...
The Jaynes-Cummings (JC) model is a milestone in the theory of coherent interaction between a two-le...
In this dissertation, I explore interactions between matter and propagating light. The electromagnet...
This work is dedicated to the investigation of the temporal dynamics of stimulated emission. In cont...
We study the dynamics of a system consisting of a two-level atom and a quantum oscillator coupled by...
This paper aims to study the physical behaviour of radiation-matter interaction by introducing conce...
We present a canonical quantum theory of radiation in nonlinear media taking into account the effect...
Abstract This paper develops a deterministic model of quantum mechanics as an accumulation-and-thres...
The paper presents a quantum mechanical treatment for analyzing the Smith-Purcell radiation generate...
This dissertation demonstrates the usefulness of exactly solvable quantum models in the investigatio...