With progress toward more compact quantum computing architectures, fundamental questions regarding the entanglement of indistinguishable particles need to be addressed. In a solid state device, this quest is naturally connected to the quantum correlations of electrons. Here, we analyze the formation of orbital (mode) and particle entanglement in strongly correlated materials due to the Coulomb interaction between the electrons. We extend the analysis to include spectroscopic measurements of the electronic structure, with a particular focus on the photoemission process. To study the role of the different forms of electronic entanglement, including the effect of particle-number superselection rules, we propose and analyze three different elec...
We consider the quantum dot entangler device introduced by Oliver et al. [1] coupled to a single pho...
Entanglement is a concept commonly used with reference to the existence of certain correlations in q...
The few-particle state of carriers confined in a quantum dot is controlled by the balance between th...
With progress toward more compact quantum computing architectures, fundamental questions regarding t...
This monograph forms an interdisciplinary study in atomic, molecular, and quantum information (QI) s...
This thesis contains four projects: entanglement and quantum phase transition in one-dimensional qua...
Several of the most interesting quantum effects can or could be observed in nanoscopic systems. For ...
Several of the most interesting quantum effects can or could be observed in nanoscopic systems. For ...
We present an investigation of orbital entanglement in mesoscopic conductors. Several schemes for ge...
We present an investigation of orbital entanglement in mesoscopic conductors. Several schemes for ge...
Quantum entanglement, the most remarkable feature of quantum physics, is recognized as a resource fo...
Quantum entanglement, the most remarkable feature of quantum physics, is recognized as a resource fo...
We present an investigation of orbital entanglement in mesoscopic conductors. Several schemes for ge...
We study theoretically the appearance of quantum correlations in two- and three-electron scattering ...
We study theoretically the appearance of quantum correlations in two- and three-electron scattering ...
We consider the quantum dot entangler device introduced by Oliver et al. [1] coupled to a single pho...
Entanglement is a concept commonly used with reference to the existence of certain correlations in q...
The few-particle state of carriers confined in a quantum dot is controlled by the balance between th...
With progress toward more compact quantum computing architectures, fundamental questions regarding t...
This monograph forms an interdisciplinary study in atomic, molecular, and quantum information (QI) s...
This thesis contains four projects: entanglement and quantum phase transition in one-dimensional qua...
Several of the most interesting quantum effects can or could be observed in nanoscopic systems. For ...
Several of the most interesting quantum effects can or could be observed in nanoscopic systems. For ...
We present an investigation of orbital entanglement in mesoscopic conductors. Several schemes for ge...
We present an investigation of orbital entanglement in mesoscopic conductors. Several schemes for ge...
Quantum entanglement, the most remarkable feature of quantum physics, is recognized as a resource fo...
Quantum entanglement, the most remarkable feature of quantum physics, is recognized as a resource fo...
We present an investigation of orbital entanglement in mesoscopic conductors. Several schemes for ge...
We study theoretically the appearance of quantum correlations in two- and three-electron scattering ...
We study theoretically the appearance of quantum correlations in two- and three-electron scattering ...
We consider the quantum dot entangler device introduced by Oliver et al. [1] coupled to a single pho...
Entanglement is a concept commonly used with reference to the existence of certain correlations in q...
The few-particle state of carriers confined in a quantum dot is controlled by the balance between th...