We present an experimental study of two optical quantum memory systems based on electromagnetically induced transparency (EIT) in cold cesium atoms.We explain the relevance of quantum memories for the development of large-scale quantum networks, we give a comprehensive theory of the EIT phenomenon and underline the role of relevant parameters regarding the implementation of quantum memories.The first system under study is prepared in a free-space magneto-optical trap. The main result of this thesis is the demonstration of the spatial multimode capability of this system at the quantum level. For this, we used Laguerre-Gaussian (LG) light beams, i.e. beams possessing a non-zero value of orbital angular momentum (OAM). In a first step, we show...
Abstract This work is split into two parts, in part one of this thesis we report on the improvement...
A quantum memory with a high storage efficiency and a long coherence time is an essential element in...
Because it allows a strong, controllable, and coherent light-matter interaction, electromagnetically...
We present an experimental study of two optical quantum memory systems based on electromagnetically ...
We present an experimental study of two optical quantum memory systems based on electromagnetically ...
We present an experimental study of two optical quantum memory systems based on electromagnetically ...
Quantum memories are an essential building block for quantum information science, and in particular ...
Nous étudions expérimentalement deux mémoires quantiques pour la lumière utilisant la transparence é...
This PhD thesis focuses on the development of highly-efficient quantum memories based on large ensem...
Many laboratories work on the development of quantum memories, a key element of quantum information ...
We built a new experiment using cold atoms interacting with the light guided by an optical nanofiber...
Quantum communication aims at generating, distributing and storing qubits between distant locations,...
Quantum communication aims at generating, distributing and storing qubits between distant locations,...
Quantum memory for flying optical qubits is a key enabler for a wide range of applications in quantu...
We built a new experiment using cold atoms interacting with the light guided by an optical nanofiber...
Abstract This work is split into two parts, in part one of this thesis we report on the improvement...
A quantum memory with a high storage efficiency and a long coherence time is an essential element in...
Because it allows a strong, controllable, and coherent light-matter interaction, electromagnetically...
We present an experimental study of two optical quantum memory systems based on electromagnetically ...
We present an experimental study of two optical quantum memory systems based on electromagnetically ...
We present an experimental study of two optical quantum memory systems based on electromagnetically ...
Quantum memories are an essential building block for quantum information science, and in particular ...
Nous étudions expérimentalement deux mémoires quantiques pour la lumière utilisant la transparence é...
This PhD thesis focuses on the development of highly-efficient quantum memories based on large ensem...
Many laboratories work on the development of quantum memories, a key element of quantum information ...
We built a new experiment using cold atoms interacting with the light guided by an optical nanofiber...
Quantum communication aims at generating, distributing and storing qubits between distant locations,...
Quantum communication aims at generating, distributing and storing qubits between distant locations,...
Quantum memory for flying optical qubits is a key enabler for a wide range of applications in quantu...
We built a new experiment using cold atoms interacting with the light guided by an optical nanofiber...
Abstract This work is split into two parts, in part one of this thesis we report on the improvement...
A quantum memory with a high storage efficiency and a long coherence time is an essential element in...
Because it allows a strong, controllable, and coherent light-matter interaction, electromagnetically...