Many-particle entanglement is a fundamental concept of quantum physics that still presents conceptual challenges. Although nonclassical states of atomic ensembles were used to enhance measurement precision in quantum metrology, the notion of entanglement in these systems was debated because the correlations among the indistinguishable atoms were witnessed by collective measurements only. Here, we use high-resolution imaging to directly measure the spin correlations between spatially separated parts of a spin-squeezed Bose-Einstein condensate. We observe entanglement that is strong enough for Einstein-Podolsky-Rosen steering: We can predict measurement outcomes for noncommuting observables in one spatial region on the basis of corresponding ...
We present a method to detect bipartite entanglement based on number-phase-like uncertainty relation...
We propose to generate Einstein-Podolsky-Rosen (EPR) entanglement between groups of atoms in a two-w...
International audienceEntanglement witnesses based on first and second moments exist in the form of ...
The predictions of quantum mechanics often differ from our everyday experiences. In the classical ca...
We consider how to generate and detect Einstein-Podolsky-Rosen (EPR) entanglement and the steering p...
We consider how to generate and detect Einstein-Podolsky-Rosen (EPR) entanglement and the steering p...
Entanglement is an essential property of quantum many-body systems. However, its local detection is ...
A prerequisite for the comprehensive understanding of many-body quantum systems is a characterizatio...
According to quantum mechanics, the results of measurements performed on different systems can show ...
The light produced by parametric down-conversion shows strong spatial entanglement that leads to vio...
We propose a method to infer the single-particle entropy of bosonic atoms in an optical lattice and ...
We use the uncertainty relation between the operators associated with the total number of particles ...
We derive experimentally measurable lower bounds for the two-site entanglement of the spin-degrees o...
Bell correlations are a foundational demonstration of how quantum entanglement contradicts the class...
Recent experimental measurements of atomic intensity correlations through atom shot noise suggest th...
We present a method to detect bipartite entanglement based on number-phase-like uncertainty relation...
We propose to generate Einstein-Podolsky-Rosen (EPR) entanglement between groups of atoms in a two-w...
International audienceEntanglement witnesses based on first and second moments exist in the form of ...
The predictions of quantum mechanics often differ from our everyday experiences. In the classical ca...
We consider how to generate and detect Einstein-Podolsky-Rosen (EPR) entanglement and the steering p...
We consider how to generate and detect Einstein-Podolsky-Rosen (EPR) entanglement and the steering p...
Entanglement is an essential property of quantum many-body systems. However, its local detection is ...
A prerequisite for the comprehensive understanding of many-body quantum systems is a characterizatio...
According to quantum mechanics, the results of measurements performed on different systems can show ...
The light produced by parametric down-conversion shows strong spatial entanglement that leads to vio...
We propose a method to infer the single-particle entropy of bosonic atoms in an optical lattice and ...
We use the uncertainty relation between the operators associated with the total number of particles ...
We derive experimentally measurable lower bounds for the two-site entanglement of the spin-degrees o...
Bell correlations are a foundational demonstration of how quantum entanglement contradicts the class...
Recent experimental measurements of atomic intensity correlations through atom shot noise suggest th...
We present a method to detect bipartite entanglement based on number-phase-like uncertainty relation...
We propose to generate Einstein-Podolsky-Rosen (EPR) entanglement between groups of atoms in a two-w...
International audienceEntanglement witnesses based on first and second moments exist in the form of ...