A central problem in many-body quantum physics is the determination of the ground state of a thermodynamically large physical system. We construct a cluster expansion for ground states of local Hamiltonians, which naturally incorporates physical requirements inherited by locality as conditions on its cluster amplitudes. Applying a diagrammatic technique we derive the relation of these amplitudes to thermodynamic quantities and local observables. Moreover we derive a set of functional equations that determine the cluster amplitudes for a general Hamiltonian, verify the consistency with perturbation theory and discuss non-perturbative approaches. Lastly we verify the persistence of locality features of the cluster expansion under unitary evol...
We consider quantum quenches in integrable models. We argue that the behavior of local observables a...
We propose a generalization of the linked-cluster expansions to study driven-dissipative quantum lat...
We study the complexity of finding the ground state energy density of a local Hamiltonian on a latti...
49 pages, 23 figuresInternational audienceA central problem in many-body quantum physics is the dete...
AbstractA central problem in many-body quantum physics is the determination of the ground state of a...
Investigating stability and simulatability of quantum states on lattice systems is a central topic i...
The linked cluster method is one of the most ecient ways to generate per-turbation series expansions...
Traditional quantum physics solves ground states for a given Hamiltonian, while quantum information ...
We present a simple quantum many-body system - a two-dimensional lattice of qubits with a Hamiltonia...
This work is concerned with thermal quantum states of Hamiltonians on spin- and fermionic-lattice sy...
This work is concerned with thermal quantum states of Hamiltonians on spin and fermionic lattice sys...
The low-temperature physics of quantum many-body systems is largely governed by the structure of the...
11 págs.; 2 figs.; 2 tabs.; 4 apps.We propose a method to construct the ground state ψ(λ) of local l...
Abstract. Continuing the work of a previous paper, the Glimm-Jaffe-Spencer cluster expansion from co...
We study the problem of a quantum quench in which the initial state is the ground state of an inhomo...
We consider quantum quenches in integrable models. We argue that the behavior of local observables a...
We propose a generalization of the linked-cluster expansions to study driven-dissipative quantum lat...
We study the complexity of finding the ground state energy density of a local Hamiltonian on a latti...
49 pages, 23 figuresInternational audienceA central problem in many-body quantum physics is the dete...
AbstractA central problem in many-body quantum physics is the determination of the ground state of a...
Investigating stability and simulatability of quantum states on lattice systems is a central topic i...
The linked cluster method is one of the most ecient ways to generate per-turbation series expansions...
Traditional quantum physics solves ground states for a given Hamiltonian, while quantum information ...
We present a simple quantum many-body system - a two-dimensional lattice of qubits with a Hamiltonia...
This work is concerned with thermal quantum states of Hamiltonians on spin- and fermionic-lattice sy...
This work is concerned with thermal quantum states of Hamiltonians on spin and fermionic lattice sys...
The low-temperature physics of quantum many-body systems is largely governed by the structure of the...
11 págs.; 2 figs.; 2 tabs.; 4 apps.We propose a method to construct the ground state ψ(λ) of local l...
Abstract. Continuing the work of a previous paper, the Glimm-Jaffe-Spencer cluster expansion from co...
We study the problem of a quantum quench in which the initial state is the ground state of an inhomo...
We consider quantum quenches in integrable models. We argue that the behavior of local observables a...
We propose a generalization of the linked-cluster expansions to study driven-dissipative quantum lat...
We study the complexity of finding the ground state energy density of a local Hamiltonian on a latti...