We explore the relation between entanglement entropy of quantum many-body systems and the distribution of corresponding, properly selected, observables. Such a relation is necessary to actually measure the entanglement entropy. We show that, in general, the Shannon entropy of the probability distribution of certain symmetry observables gives a lower bound to the entropy. In some cases this bound is saturated and directly gives the entropy. We also show other cases in which the probability distribution contains enough information to extract the entropy: we show how this is done in several examples including BEC wave functions, the Dicke model, XY spin chain, and chains with strong randomness
International audienceWe study the Shannon entropy of the probability distribution resulting from th...
International audienceWe study the Shannon entropy of the probability distribution resulting from th...
To build quantum computer or any other quan-tum device we need to maintain quantum con-trol. Entangl...
We explore the relation between entanglement entropy of quantum many-body systems and the distributi...
We explore the relation between entanglement entropy of quantum many-body systems and the distributi...
The ground state entanglement entropy is studied in a many-body bipartite quantum system with either...
Consider a system consisting of n d-dimensional quantum particles and arbitrary pure state $|\Psi\ra...
Entanglement is the most unique and distinguishing feature of quantum mechanics, and is of fundament...
The notion of entropy has been at the core of thermodynamics and statistical physics since the 19th ...
This chapter addresses the question of quantum entanglement in disordered chains, focusing on the vo...
Entanglement Entropy and Localization in Disordered Quantum Chains Nicolas Laflorencie Chapte...
Physical interactions in quantum many-body systems are typically local: Individual constituents inte...
A probability distribution encodes all the statistics of its corresponding random variable, hence it...
For a system randomly prepared in a number of quantum states, we present a lower bound for the disti...
Entropy may be regarded as the physical quantity with the most facets. It is successfully used to de...
International audienceWe study the Shannon entropy of the probability distribution resulting from th...
International audienceWe study the Shannon entropy of the probability distribution resulting from th...
To build quantum computer or any other quan-tum device we need to maintain quantum con-trol. Entangl...
We explore the relation between entanglement entropy of quantum many-body systems and the distributi...
We explore the relation between entanglement entropy of quantum many-body systems and the distributi...
The ground state entanglement entropy is studied in a many-body bipartite quantum system with either...
Consider a system consisting of n d-dimensional quantum particles and arbitrary pure state $|\Psi\ra...
Entanglement is the most unique and distinguishing feature of quantum mechanics, and is of fundament...
The notion of entropy has been at the core of thermodynamics and statistical physics since the 19th ...
This chapter addresses the question of quantum entanglement in disordered chains, focusing on the vo...
Entanglement Entropy and Localization in Disordered Quantum Chains Nicolas Laflorencie Chapte...
Physical interactions in quantum many-body systems are typically local: Individual constituents inte...
A probability distribution encodes all the statistics of its corresponding random variable, hence it...
For a system randomly prepared in a number of quantum states, we present a lower bound for the disti...
Entropy may be regarded as the physical quantity with the most facets. It is successfully used to de...
International audienceWe study the Shannon entropy of the probability distribution resulting from th...
International audienceWe study the Shannon entropy of the probability distribution resulting from th...
To build quantum computer or any other quan-tum device we need to maintain quantum con-trol. Entangl...