In this manuscript, we present an experimental study of spin squeezing in a spinor Bose-Einstein condensate of ⁸⁷Rb, arising from a non-linear interaction originating from collisions between the two internal states |F=1, m_F=-1≻ and |F=2, m_F=1≻ of the 5²S_{1/2} manifold. The atoms are cooled down in a magneto-optical trap and magnetically trapped thanks to our atom-chip which acts as a top wall for our vacuum cell. The chip is also used to emit the radio-frequency field that perform the evaporative cooling leading to Bose-Einstein condensation, and the microwave field used to coherently transfer the atoms from one internal state to another.The atomic ensemble in a coherent superposition is well described by the so-called textit{one-axis-tw...
Atomic sensors are among the best devices for precision measurements of time, electric and magnetic ...
We theoretically investigate a scheme to enhance relative number squeezing and spin squeezing in a t...
Robin Kaiser (président), Jean-Claude Keller (rapporteur), Pierre Pillet (directeur de thèse), Chris...
In this manuscript, we present an experimental study of spin squeezing in a spinor Bose-Einstein con...
Spin squeezed states are multi-particle entangled states that have practical interest in quantum met...
Abstract -The evolution of an interacting two-component Bose-Einstein condensate from an initial pha...
In this thesis, we experimentally study the generation of metrologically useful spin squeezed states...
We consider a collection of atoms prepared in a Bose-Einstein condensate which interact via two-body...
We report the results of few experiments on ultra-cold gases of metastable helium which tackle two t...
Interferometry is the most precise measurement technique known today. It is based on interference an...
In this thesis, we study several methods to improve atom interferometers. In the first part of the m...
The quantum properties of matter waves, in particular quantum correlations and entanglement are an i...
Spin squeezing, the generation of collective states of atomic ensembles with reduced spin noise by e...
We theoretically investigate a scheme to enhance spin squeezing in a two-component Bose-Einstein co...
The manuscript focuses mainly on the study of spin dynamics in bosonic chromium quantum gases, Chrom...
Atomic sensors are among the best devices for precision measurements of time, electric and magnetic ...
We theoretically investigate a scheme to enhance relative number squeezing and spin squeezing in a t...
Robin Kaiser (président), Jean-Claude Keller (rapporteur), Pierre Pillet (directeur de thèse), Chris...
In this manuscript, we present an experimental study of spin squeezing in a spinor Bose-Einstein con...
Spin squeezed states are multi-particle entangled states that have practical interest in quantum met...
Abstract -The evolution of an interacting two-component Bose-Einstein condensate from an initial pha...
In this thesis, we experimentally study the generation of metrologically useful spin squeezed states...
We consider a collection of atoms prepared in a Bose-Einstein condensate which interact via two-body...
We report the results of few experiments on ultra-cold gases of metastable helium which tackle two t...
Interferometry is the most precise measurement technique known today. It is based on interference an...
In this thesis, we study several methods to improve atom interferometers. In the first part of the m...
The quantum properties of matter waves, in particular quantum correlations and entanglement are an i...
Spin squeezing, the generation of collective states of atomic ensembles with reduced spin noise by e...
We theoretically investigate a scheme to enhance spin squeezing in a two-component Bose-Einstein co...
The manuscript focuses mainly on the study of spin dynamics in bosonic chromium quantum gases, Chrom...
Atomic sensors are among the best devices for precision measurements of time, electric and magnetic ...
We theoretically investigate a scheme to enhance relative number squeezing and spin squeezing in a t...
Robin Kaiser (président), Jean-Claude Keller (rapporteur), Pierre Pillet (directeur de thèse), Chris...