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Probing quasiparticle excitations in a doped Mott insulator via Friedel oscillations

Probing quasiparticle excitations in a doped Mott insulator via Friedel oscillations

来源:Arxiv_logoArxiv
英文摘要

In this work, we investigate impurity-induced Friedel oscillations in the doped two-dimensional Hubbard model, focusing on the role of holon and doublon excitations. We show that weak impurities, due to the non-fermionic nature of the underlying quasiparticles, induce Friedel oscillations whose behavior is consistent with an effective non-interacting theory for these quasiparticles, and whose wavevector reflects the violation of Luttinger's theorem. At larger impurity strength, the system transitions to a phase-separated state composed of coexisting Mott-insulating (half-filled) and hole-rich regions. Within the composite operator framework, this phase separation arises from a competition between the kinetic energy of holons and the tendency to form tightly bound holon-doublon pairs. Our results offer new insights into the nature of charge carriers and the emergent electronic phases in the doped Mott regime.

Anurag Banerjee、Emile Pangburn、Catherine Pépin、Cristina Bena

物理学

Anurag Banerjee,Emile Pangburn,Catherine Pépin,Cristina Bena.Probing quasiparticle excitations in a doped Mott insulator via Friedel oscillations[EB/OL].(2025-05-30)[2025-06-30].https://arxiv.org/abs/2505.24300.点此复制

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