We present a straightforward scheme for creating macroscopic superpositions of different superfluid flow states of Bose-Einstein condensates trapped in optical lattices. This scheme has the great advantage that all the techniques required are achievable with current experiments. Furthermore, the relative difficulty of creating cats scales favorably with the size of the cat. This means that this scheme may be well-suited to creating superpositions involving large numbers of particles. Such states may have interesting technological applications such as making quantum-limited measurements of angular momentum
We theoretically examine two-color photoassociation of a Bose-Einstein condensate, focusing on the r...
Abstract.- We study the stability of a rotating repulsive-atom Bose-Einstein condensate in a toroida...
We study macroscopic superpositions in the orbital rather than the spatial degrees of freedom, in a ...
We consider how macroscopic quantum superpositions may be created from arrays of Bose-Einstein conde...
We study why it is hard to make a macroscopic superposition of superfluid flows in a Bose-Einstein c...
We experimentally and numerically demonstrate a method to generate multiply quantized superfluid cir...
PACS 03.75.Mn – Multicomponent condensates; spinor condensates PACS 03.65.Ta – Foundations of quantu...
We theoretically investigate the effect of multimode dynamics on the creation of macroscopic superpo...
The generation of macroscopic quantum superposition states in two-species dilute gas Bose-Einstein c...
Quantum superpositions of macroscopically distinguishable states having distinct phases can be creat...
We consider a weakly interacting coherently coupled Bose-Einstein condensate in a double-well potent...
In this dissertation, I analyze certain problems in the following areas: 1) quantum dynamical phenom...
We propose a measure for the "size" of a Schroedinger cat state, i.e. a quantum superposition of two...
abstract: While the use of super-cooled gasses as a tool for the study of macroscopic quantum effect...
The most striking feature of quantum mechanics is the existence of superposition states, where an ob...
We theoretically examine two-color photoassociation of a Bose-Einstein condensate, focusing on the r...
Abstract.- We study the stability of a rotating repulsive-atom Bose-Einstein condensate in a toroida...
We study macroscopic superpositions in the orbital rather than the spatial degrees of freedom, in a ...
We consider how macroscopic quantum superpositions may be created from arrays of Bose-Einstein conde...
We study why it is hard to make a macroscopic superposition of superfluid flows in a Bose-Einstein c...
We experimentally and numerically demonstrate a method to generate multiply quantized superfluid cir...
PACS 03.75.Mn – Multicomponent condensates; spinor condensates PACS 03.65.Ta – Foundations of quantu...
We theoretically investigate the effect of multimode dynamics on the creation of macroscopic superpo...
The generation of macroscopic quantum superposition states in two-species dilute gas Bose-Einstein c...
Quantum superpositions of macroscopically distinguishable states having distinct phases can be creat...
We consider a weakly interacting coherently coupled Bose-Einstein condensate in a double-well potent...
In this dissertation, I analyze certain problems in the following areas: 1) quantum dynamical phenom...
We propose a measure for the "size" of a Schroedinger cat state, i.e. a quantum superposition of two...
abstract: While the use of super-cooled gasses as a tool for the study of macroscopic quantum effect...
The most striking feature of quantum mechanics is the existence of superposition states, where an ob...
We theoretically examine two-color photoassociation of a Bose-Einstein condensate, focusing on the r...
Abstract.- We study the stability of a rotating repulsive-atom Bose-Einstein condensate in a toroida...
We study macroscopic superpositions in the orbital rather than the spatial degrees of freedom, in a ...