Dimerized phase and quantum entanglement are investigated in the one-dimensional spin-1 bilinear biquadratic model. Employing the infinite matrix product state representation, groundstate wavefunctions are numerically obtained by using the infinite time evolving block decimation method in the infinite lattice system. From a bipartite entanglement measure of the groundstates, i.e., von Neumann entropy, the phase transition points can be clearly extracted. Moreover, the even-bond and odd-bond von Neumann entropies show two different values in the spontaneous dimerized phase. It implies that the quantum entanglement can distinguish the two degenerate groundstates. Then, we define a dimer entropy in the spontaneous dimerized phase. Comparing to...
Entanglement entropy is a powerful tool to detect continuous, discontinuous and even topological pha...
CAPES - COORDENAÇÃO DE APERFEIÇOAMENTO DE PESSOAL E NÍVEL SUPERIORWe calculate the bipartite von Neu...
The interplay of the constituents of interacting many-body systems may reveal emergent properties on...
Bahovadinov MS, Gülseren O, Schnack J. Local entanglement and string order parameter in dimerized mo...
In this paper, we discuss a novel method based on a quantum-information-tool suitable to identify a...
We study here different regions in phase diagrams of the spin-1/2, spin-1 and spin-3/2 one-dimension...
We study here different regions in phase diagrams of the spin-1/2, spin-1 and spin-3/2 one-dimension...
We study the entanglement structure and the topological edge states of the ground state of the spin-...
Ground-state entanglement entropies were investigated for the one-dimension quantum two- a...
We perform a matrix-product-state–based density matrix renormalisation group analysis of the phases ...
We study quantum phase transition of interacting fermions by measuring the local entanglement entrop...
Full knowledge of the entanglement properties of quantum systems can be used to identify different p...
We perform a matrix-product-state–based density matrix renormalisation group analysis of the phases ...
10 pages, 6 figures; v2: published versionInternational audienceWe extend the definition of the rece...
Entanglement entropy is a powerful tool to detect continuous, discontinuous and even topological pha...
Entanglement entropy is a powerful tool to detect continuous, discontinuous and even topological pha...
CAPES - COORDENAÇÃO DE APERFEIÇOAMENTO DE PESSOAL E NÍVEL SUPERIORWe calculate the bipartite von Neu...
The interplay of the constituents of interacting many-body systems may reveal emergent properties on...
Bahovadinov MS, Gülseren O, Schnack J. Local entanglement and string order parameter in dimerized mo...
In this paper, we discuss a novel method based on a quantum-information-tool suitable to identify a...
We study here different regions in phase diagrams of the spin-1/2, spin-1 and spin-3/2 one-dimension...
We study here different regions in phase diagrams of the spin-1/2, spin-1 and spin-3/2 one-dimension...
We study the entanglement structure and the topological edge states of the ground state of the spin-...
Ground-state entanglement entropies were investigated for the one-dimension quantum two- a...
We perform a matrix-product-state–based density matrix renormalisation group analysis of the phases ...
We study quantum phase transition of interacting fermions by measuring the local entanglement entrop...
Full knowledge of the entanglement properties of quantum systems can be used to identify different p...
We perform a matrix-product-state–based density matrix renormalisation group analysis of the phases ...
10 pages, 6 figures; v2: published versionInternational audienceWe extend the definition of the rece...
Entanglement entropy is a powerful tool to detect continuous, discontinuous and even topological pha...
Entanglement entropy is a powerful tool to detect continuous, discontinuous and even topological pha...
CAPES - COORDENAÇÃO DE APERFEIÇOAMENTO DE PESSOAL E NÍVEL SUPERIORWe calculate the bipartite von Neu...
The interplay of the constituents of interacting many-body systems may reveal emergent properties on...