arXiv · 1910.03352
Quasiparticle mass enhancement as a measure of entanglement in the Kondo problem
Abstract
We analyze the quantum entanglement between opposite spin projection electrons in the ground state of the Anderson impurity model. In this model, a single level impurity with intralevel repulsion U is tunnel coupled to a free electron gas. The Anderson model presents a strongly correlated many body ground state with mass enhanced quasiparticle excitations. We find, using both analytical and numerical tools, that the quantum entanglement between opposite spin projection electrons is a monotonic universal function of the quasiparticle mass enhancement Z. The mass enhancement, which is used to quantify the correlations in quantum many body systems, could therefore be used to quantify spin entanglement.
Explore related subjects
Keep this discovery
Nayra A. Álvarez Pari, D. J. García, Pablo S. Cornaglia. 2019-10-08. Quasiparticle mass enhancement as a measure of entanglement in the Kondo problem. https://doi.org/10.1103/physrevlett.125.217601
Cite the original work for its findings. Save a collection to share your selection of sources.