Current Publications

Journal Publications
since 2022

Recent Journal Publications

[46201]
Title: Scaling of genuine multiparticle entanglement close to a quantum phase transition.
Written by: M. Hofmann, A. Osterloh, and O. Gühne
in: <em>Phys. Rev. B</em>. Apr (2014).
Volume: <strong>89</strong>. Number:
on pages: 134101
Chapter:
Editor:
Publisher: American Physical Society:
Series:
Address:
Edition:
ISBN:
how published:
Organization:
School:
Institution:
Type:
DOI: 10.1103/PhysRevB.89.134101
URL: http://link.aps.org/doi/10.1103/PhysRevB.89.134101
ARXIVID:
PMID:

[www] [BibTex]

Note: article

Abstract: We investigate the scaling and spatial distribution of genuine multiparticle entanglement in three- and four-spin reduced states of the one-dimensional XY model at the quantum phase transition. We observe a logarithmic divergence, show that genuine three- and four-particle entanglement obeys finite-size scaling of the XY model and demonstrate that the genuine three-particle entanglement has a finite spatial range.

Conference Abstracts and Proceedings
since 2022

Recent Conference Abstracts and Proceedings

[46201]
Title: Scaling of genuine multiparticle entanglement close to a quantum phase transition.
Written by: M. Hofmann, A. Osterloh, and O. Gühne
in: <em>Phys. Rev. B</em>. Apr (2014).
Volume: <strong>89</strong>. Number:
on pages: 134101
Chapter:
Editor:
Publisher: American Physical Society:
Series:
Address:
Edition:
ISBN:
how published:
Organization:
School:
Institution:
Type:
DOI: 10.1103/PhysRevB.89.134101
URL: http://link.aps.org/doi/10.1103/PhysRevB.89.134101
ARXIVID:
PMID:

[www]

Note: article

Abstract: We investigate the scaling and spatial distribution of genuine multiparticle entanglement in three- and four-spin reduced states of the one-dimensional XY model at the quantum phase transition. We observe a logarithmic divergence, show that genuine three- and four-particle entanglement obeys finite-size scaling of the XY model and demonstrate that the genuine three-particle entanglement has a finite spatial range.

Publications

Journal Publications
since 2014

Journal Publications

[46201]
Title: Scaling of genuine multiparticle entanglement close to a quantum phase transition.
Written by: M. Hofmann, A. Osterloh, and O. Gühne
in: <em>Phys. Rev. B</em>. Apr (2014).
Volume: <strong>89</strong>. Number:
on pages: 134101
Chapter:
Editor:
Publisher: American Physical Society:
Series:
Address:
Edition:
ISBN:
how published:
Organization:
School:
Institution:
Type:
DOI: 10.1103/PhysRevB.89.134101
URL: http://link.aps.org/doi/10.1103/PhysRevB.89.134101
ARXIVID:
PMID:

[www] [BibTex]

Note: article

Abstract: We investigate the scaling and spatial distribution of genuine multiparticle entanglement in three- and four-spin reduced states of the one-dimensional XY model at the quantum phase transition. We observe a logarithmic divergence, show that genuine three- and four-particle entanglement obeys finite-size scaling of the XY model and demonstrate that the genuine three-particle entanglement has a finite spatial range.

Conference Abstracts and Proceedings
since 2014

Conference Abstracts and Proceedings

[46201]
Title: Scaling of genuine multiparticle entanglement close to a quantum phase transition.
Written by: M. Hofmann, A. Osterloh, and O. Gühne
in: <em>Phys. Rev. B</em>. Apr (2014).
Volume: <strong>89</strong>. Number:
on pages: 134101
Chapter:
Editor:
Publisher: American Physical Society:
Series:
Address:
Edition:
ISBN:
how published:
Organization:
School:
Institution:
Type:
DOI: 10.1103/PhysRevB.89.134101
URL: http://link.aps.org/doi/10.1103/PhysRevB.89.134101
ARXIVID:
PMID:

[www]

Note: article

Abstract: We investigate the scaling and spatial distribution of genuine multiparticle entanglement in three- and four-spin reduced states of the one-dimensional XY model at the quantum phase transition. We observe a logarithmic divergence, show that genuine three- and four-particle entanglement obeys finite-size scaling of the XY model and demonstrate that the genuine three-particle entanglement has a finite spatial range.

Publications Pre-dating the Institute

Publications
2007-2013

Old Publications

[46201]
Title: Scaling of genuine multiparticle entanglement close to a quantum phase transition.
Written by: M. Hofmann, A. Osterloh, and O. Gühne
in: <em>Phys. Rev. B</em>. Apr (2014).
Volume: <strong>89</strong>. Number:
on pages: 134101
Chapter:
Editor:
Publisher: American Physical Society:
Series:
Address:
Edition:
ISBN:
how published:
Organization:
School:
Institution:
Type:
DOI: 10.1103/PhysRevB.89.134101
URL: http://link.aps.org/doi/10.1103/PhysRevB.89.134101
ARXIVID:
PMID:

[www]

Note: article

Abstract: We investigate the scaling and spatial distribution of genuine multiparticle entanglement in three- and four-spin reduced states of the one-dimensional XY model at the quantum phase transition. We observe a logarithmic divergence, show that genuine three- and four-particle entanglement obeys finite-size scaling of the XY model and demonstrate that the genuine three-particle entanglement has a finite spatial range.

Open Access Publications

Journal Publications
since 2014

Open Access Publications

[46201]
Title: Scaling of genuine multiparticle entanglement close to a quantum phase transition.
Written by: M. Hofmann, A. Osterloh, and O. Gühne
in: <em>Phys. Rev. B</em>. Apr (2014).
Volume: <strong>89</strong>. Number:
on pages: 134101
Chapter:
Editor:
Publisher: American Physical Society:
Series:
Address:
Edition:
ISBN:
how published:
Organization:
School:
Institution:
Type:
DOI: 10.1103/PhysRevB.89.134101
URL: http://link.aps.org/doi/10.1103/PhysRevB.89.134101
ARXIVID:
PMID:

[www] [BibTex]

Note: article

Abstract: We investigate the scaling and spatial distribution of genuine multiparticle entanglement in three- and four-spin reduced states of the one-dimensional XY model at the quantum phase transition. We observe a logarithmic divergence, show that genuine three- and four-particle entanglement obeys finite-size scaling of the XY model and demonstrate that the genuine three-particle entanglement has a finite spatial range.