In a recent experiment, Campbell [Phys. Rev. Lett. 96, 020406 (2006)] observed degenerate four-wave mixing of matter waves in a one-dimensional optical lattice. We analyze the essential quantum features of the experiment to show that entanglement is created between the quadratures of the two scattered atomic clouds and is a true many-body (rather than two-body) phenomenon. We demonstrate that well-known bipartite entanglement inequalities are significantly violated and that this is robust to a moderate level of coherent seeding. The system is thus a promising candidate for generating spatially separated macroscopically entangled atomic samples
We investigate the entanglement characteristics of two general bimodal Bose-Einstein condensates-a p...
The coherence properties of amplified matter waves generated by four-wave mixing (FWM) are studied u...
We show that it is possible to generate entanglement between two distant Bose-Einstein condensates b...
We investigate the atom-optical analog of degenerate four-wave mixing by colliding two Bose-Einstein...
In most proposals for the generation of entanglement in large ensembles of atoms via projective meas...
Motivated by recent experiments, we study four-wave-mixing in an atomic double- system driven by a ...
We propose and analyze the use of a three-well Bose-Hubbard model for the creation of two spatially ...
We perform a theoretical analysis of atomic four-wave mixing via a collision of two Bose–Einstein c...
We propose three criteria for identifying continuous variable entanglement between two many-particle...
We show that it is possible to generate entanglement between two distant Bose-Einstein condensates b...
We review the Bogoliubov theory in the context of recent experiments, where atoms are scattered from...
Quantum networks are composed of quantum nodes that interact coherently through quantum channels, an...
When light passes through two slits to hit a distant screen, a periodic light pattern emerges that i...
Entanglement is generated by path-erasing detection of single photon emitted indistinguishably by tw...
Every Bose-Einstein condensate is in a highly entangled state, as a consequence of the fact that the...
We investigate the entanglement characteristics of two general bimodal Bose-Einstein condensates-a p...
The coherence properties of amplified matter waves generated by four-wave mixing (FWM) are studied u...
We show that it is possible to generate entanglement between two distant Bose-Einstein condensates b...
We investigate the atom-optical analog of degenerate four-wave mixing by colliding two Bose-Einstein...
In most proposals for the generation of entanglement in large ensembles of atoms via projective meas...
Motivated by recent experiments, we study four-wave-mixing in an atomic double- system driven by a ...
We propose and analyze the use of a three-well Bose-Hubbard model for the creation of two spatially ...
We perform a theoretical analysis of atomic four-wave mixing via a collision of two Bose–Einstein c...
We propose three criteria for identifying continuous variable entanglement between two many-particle...
We show that it is possible to generate entanglement between two distant Bose-Einstein condensates b...
We review the Bogoliubov theory in the context of recent experiments, where atoms are scattered from...
Quantum networks are composed of quantum nodes that interact coherently through quantum channels, an...
When light passes through two slits to hit a distant screen, a periodic light pattern emerges that i...
Entanglement is generated by path-erasing detection of single photon emitted indistinguishably by tw...
Every Bose-Einstein condensate is in a highly entangled state, as a consequence of the fact that the...
We investigate the entanglement characteristics of two general bimodal Bose-Einstein condensates-a p...
The coherence properties of amplified matter waves generated by four-wave mixing (FWM) are studied u...
We show that it is possible to generate entanglement between two distant Bose-Einstein condensates b...