- By:
- Yang, Luhang; Dagotto Mir, Elbio R; Feiguin, Adrian
- Journal Name:
- SciPost Physics
- Page Number:
- 31
- Volume:
- 21
- Publication Date:
- August 17, 2026
- View DOI Listing:
- https://doi.org/10.21468/SciPostPhys.21.2.031
Abstract
We numerically investigate the telltale signs of pair-density-wave order (PDW) in the Kondo-Heisenberg chain by focusing on the momentum resolved spectrum in different parameter regimes. Density matrix renormalization group calculations reveal that this phase is characterized by a dispersion with two minima and four Fermi points, indicating the emergence of an effective next-nearest-neighbor hopping that arises as a second-order effect to avoid magnetic frustration. The pairs appear in the spectrum as in-gap bound states with weight concentrated in the hole pockets. The low-energy physics can be understood by means of a generalized t−J model with next-nearest-neighbor hopping. Our results offer a guide for searching for experimental signatures, and for other models that can realize PDW physics.