Understanding the role of correlations in quantum systems is both a fundamental challenge as well as of high practical relevance for the control of multi-particle quantum systems. Whereas a lot of research has been devoted to study the various types of correlations that can be present in the states of quantum systems, in this work we introduce a general and rigorous method to quantify the amount of correlations in the dynamics of quantum systems. Using a resource-theoretical approach, we introduce a suitable quantifier and characterize the properties of correlated dynamics. Furthermore, we benchmark our method by applying it to the paradigmatic case of two atoms weakly coupled to the electromagnetic radiation field, and illustrate its poten...
Funding: DG and DK acknowledge studentship funding from EPSRC under grant no. EP/L015110//1. AS ackn...
We review a recently developed theoretical approach to the experimental detection and quantification...
We perform first-principles quantum simulations of dissociation of trapped, spatially inhomogeneous ...
Understanding the role of correlations in quantum systems is both a fundamental challenge as well as...
Correlations between different partitions of quantum systems play a central role in a variety of man...
It is shown that errors due to spatially correlated noises can be corrected by the quantumerror-corr...
The fact that quantum mechanics predicts stronger correlations than classical physics is an essentia...
The challenge of making nano-scale quantum systems experimentally accessible is being overcome for a...
Information and correlations in a quantum system are closely related through the process of measurem...
We introduce an approach for the characterization of quantum correlations in two-fermion systems bas...
We analyze the dynamics of various kinds of correlations present between two initially entangled ind...
This dissertation explores some di erences between quantum mechanics and other theories from a compu...
In this work, we developed a general approach to the problem of detecting and quantifying different ...
We present a detailed perturbative study of the dynamics of several types of atom–atom correlations ...
We study the estimation precision attainable by entanglement-enhanced Ramsey interferometry in the p...
Funding: DG and DK acknowledge studentship funding from EPSRC under grant no. EP/L015110//1. AS ackn...
We review a recently developed theoretical approach to the experimental detection and quantification...
We perform first-principles quantum simulations of dissociation of trapped, spatially inhomogeneous ...
Understanding the role of correlations in quantum systems is both a fundamental challenge as well as...
Correlations between different partitions of quantum systems play a central role in a variety of man...
It is shown that errors due to spatially correlated noises can be corrected by the quantumerror-corr...
The fact that quantum mechanics predicts stronger correlations than classical physics is an essentia...
The challenge of making nano-scale quantum systems experimentally accessible is being overcome for a...
Information and correlations in a quantum system are closely related through the process of measurem...
We introduce an approach for the characterization of quantum correlations in two-fermion systems bas...
We analyze the dynamics of various kinds of correlations present between two initially entangled ind...
This dissertation explores some di erences between quantum mechanics and other theories from a compu...
In this work, we developed a general approach to the problem of detecting and quantifying different ...
We present a detailed perturbative study of the dynamics of several types of atom–atom correlations ...
We study the estimation precision attainable by entanglement-enhanced Ramsey interferometry in the p...
Funding: DG and DK acknowledge studentship funding from EPSRC under grant no. EP/L015110//1. AS ackn...
We review a recently developed theoretical approach to the experimental detection and quantification...
We perform first-principles quantum simulations of dissociation of trapped, spatially inhomogeneous ...