We show how entanglement entropies allow for the estimation of quasi-long-range order in one-dimensional systems whose low-energy physics is well captured by the Tomonaga-Luttinger liquid universality class. First, we check our procedure in the exactly solvable XXZ spin-1/2 chain in its entire critical region, finding very good agreement with Bethe ansatz results. Then, we show how phase transitions between different dominant orders may be efficiently estimated by considering the superfluid-charge density wave transition in a system of dipolar bosons. Finally, we discuss the application of this method to multispecies systems such as the one-dimensional Hubbard model. Our work represents the first proof of a direct relationship between the L...
In this thesis, we study two different aspects of one-dimensional (1D) interacting spinless fermions...
The following thesis focuses on the scaling of entanglement entropy in lower dimensions and is divid...
The interplay of the constituents of interacting many-body systems may reveal emergent properties on...
We show how entanglement entropies allow for the estimation of quasi-long-range order in one-dimensi...
International audienceEntanglement is a central feature of many-body quantum systems and plays a uni...
Entanglement is a central feature of many-body quantum systems and plays a unique role in quantum ph...
A quantum system exhibits off-diagonal long-range order (ODLRO) when the largest eigenvalue λ0 of th...
We demonstrate the universal properties of dissipative Tomonaga-Luttinger (TL) liquids by calculatin...
For the one-dimensional Holstein model, we show that the relations among the scaling exponents of va...
We propose a method to construct universal order parameters for quantum phase transitions in many-bo...
We describe the zero-temperature phase diagram of a model of bosons, occupying sites of a linear cha...
We show that a quadratic system of pseudofermions, with tunable fractionalized statistics, can host ...
We develop a general framework to compute the scaling of entanglement entropy in inhomogeneous one-d...
We demonstrate the universal properties of dissipative Tomonaga-Luttinger (TL) liquids by calculatin...
We investigate tacitly assumed relationships between the concepts of super-fluidity (-conductivity),...
In this thesis, we study two different aspects of one-dimensional (1D) interacting spinless fermions...
The following thesis focuses on the scaling of entanglement entropy in lower dimensions and is divid...
The interplay of the constituents of interacting many-body systems may reveal emergent properties on...
We show how entanglement entropies allow for the estimation of quasi-long-range order in one-dimensi...
International audienceEntanglement is a central feature of many-body quantum systems and plays a uni...
Entanglement is a central feature of many-body quantum systems and plays a unique role in quantum ph...
A quantum system exhibits off-diagonal long-range order (ODLRO) when the largest eigenvalue λ0 of th...
We demonstrate the universal properties of dissipative Tomonaga-Luttinger (TL) liquids by calculatin...
For the one-dimensional Holstein model, we show that the relations among the scaling exponents of va...
We propose a method to construct universal order parameters for quantum phase transitions in many-bo...
We describe the zero-temperature phase diagram of a model of bosons, occupying sites of a linear cha...
We show that a quadratic system of pseudofermions, with tunable fractionalized statistics, can host ...
We develop a general framework to compute the scaling of entanglement entropy in inhomogeneous one-d...
We demonstrate the universal properties of dissipative Tomonaga-Luttinger (TL) liquids by calculatin...
We investigate tacitly assumed relationships between the concepts of super-fluidity (-conductivity),...
In this thesis, we study two different aspects of one-dimensional (1D) interacting spinless fermions...
The following thesis focuses on the scaling of entanglement entropy in lower dimensions and is divid...
The interplay of the constituents of interacting many-body systems may reveal emergent properties on...