Oriented Triplet $p$-Wave Pairing from Fermi surface Anisotropy and Nonlocal Attraction
Abstract
Using constrained-path quantum Monte Carlo, we map the ground-state phase diagram versus the nearest-neighbor (NN) attraction and spin-dependent hopping anisotropy for the two-dimensional attractive ---- Hubbard model at filling . We identify an onsite -wave superfluid, a Cooper pair Bose metal with an uncondensed Bose surface, and an oriented equal-spin triplet -wave pairing phase. The NN attraction activates the odd-parity channel, while hopping anisotropy suppresses the competing -wave coherence and selects a polar axis, and thus lowers the critical for the onset of triplet-dominant -wave pairing. A channel-resolved Landau analysis provides a criterion for the Landau -wave scale , consistent with the observed anisotropy dependence of . Our results establish how NN interaction and Fermi surface anisotropy cooperate to generate the oriented triplet -wave pairing, and suggest that cold-atom and altermagnetic platforms could potentially realize this mechanism.
Keywords
Cite
@article{arxiv.2601.11267,
title = {Oriented Triplet $p$-Wave Pairing from Fermi surface Anisotropy and Nonlocal Attraction},
author = {Shuning Tan and Ji Liu and Minghuan Zeng and Tao Ying and Zhangkai Cao and Ho-Kin Tang},
journal= {arXiv preprint arXiv:2601.11267},
year = {2026}
}
Comments
7 pages, 4 figures in the main text and 7 page, 4 figure in the supplemental material