Geometry versus Entanglement in Resonating Valence Bond Liquids

Dhar, Himadri Shekhar ; Sen(De), Aditi (2011) Geometry versus Entanglement in Resonating Valence Bond Liquids Journal of Physics A: Mathematical and Theoretical, 44 (46). p. 465302.

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Official URL: https://doi.org/10.1088%2F1751-8113%2F44%2F46%2F46...

Abstract

We investigate the behavior of bipartite as well as genuine multipartite entanglement of a resonating valence bond state on a ladder. We show that the system possesses significant amounts of bipartite entanglement in the steps of the ladder while no substantial bipartite entanglement is present in the rails. Genuine multipartite entanglement present in the system is negligible. The results are in stark contrast with the entanglement properties of the same state on isotropic lattices in two and higher dimensions, indicating that the geometry of the lattice can have important implications on the quality of quantum information and other tasks that can be performed by using multiparty states on that lattice.

Item Type:Article
ID Code:125851
Deposited On:12 Oct 2022 11:41
Last Modified:12 Oct 2022 11:41

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