Spin texture in doped Mott insulators with spin-orbit coupling

Shuai A. Chen, Zheng-Yu Weng, and Jan Zaanen
Phys. Rev. B 105, 075136 – Published 22 February 2022

Abstract

A hole injected into a Mott insulator will gain an internal structure as recently identified by exact numerics, which is characterized by a nontrivial quantum number whose nature is of central importance in understanding the Mott physics. In this work, we show that a spin texture associated with such an internal degree of freedom can explicitly manifest after the spin degeneracy is lifted by a weak Rashba spin-orbit coupling (SOC). It is described by an emergent angular momentum Jz=±32 as shown by both exact diagonalization and variational Monte Carlo calculations, which are in good agreement with each other at a finite size. In particular, as the internal structure such a spin texture is generally present in the hole composite even at high excited energies, such that a corresponding texture in momentum space, extending deep inside the Brillouin zone, can be directly probed by the spin-polarized angle-resolved photoemission spectroscopy (ARPES). This is in contrast to a Landau quasiparticle under the SOC, in which the spin texture induced by SOC will not be protected once the excited energy is larger than the weak SOC coupling strength, away from the Fermi energy. We point out that the spin texture due to the SOC should be monotonically enhanced with reducing spin-spin correlation length in the superconducting-pseudogap phase at finite doping. A brief discussion of a recent experiment of the spin-polarized ARPES will be made.

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  • Received 23 September 2021
  • Revised 4 February 2022
  • Accepted 7 February 2022

DOI:https://doi.org/10.1103/PhysRevB.105.075136

©2022 American Physical Society

Physics Subject Headings (PhySH)

Condensed Matter, Materials & Applied Physics

Authors & Affiliations

Shuai A. Chen1, Zheng-Yu Weng1, and Jan Zaanen2

  • 1Institute for Advanced Study, Tsinghua University, Beijing 100084, China
  • 2Institute-Lorentz for Theoretical Physics, Leiden University, Leiden P.O. Box 950, The Netherlands

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Issue

Vol. 105, Iss. 7 — 15 February 2022

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