arXiv · 2505.16999
Nonlinear thermal and thermoelectric transport from quantum geometry
Abstract
Quantum geometry may enable the development of quantum phases ranging from superconductivity to correlated topological states. One powerful probe of quantum geometry is the nonlinear Hall response which detects Berry curvature dipole in systems with time-reversal invariance and broken inversion symmetry. With broken time-reversal symmetry, this response is also associated with quantum metric dipole. Here we investigate nonlinear thermal and thermoelectric responses, which provide a wealth of new information about quantum geometry. In particular, we uncover a web of connections between these quantities that parallel the standard Wiedemann-Franz and Mott relations. Implications for the studies of a variety of topological systems, including Weyl-Kondo semimetals and Bernal bilayer graphene, are discussed.
Explore related subjects
Keep this discovery
Explore connections, maps & timelines
Yuan Fang, Shouvik Sur, Yonglong Xie, Qimiao Si. 2025-05-22. Nonlinear thermal and thermoelectric transport from quantum geometry. https://arxiv.org/abs/2505.16999
Cite the original work for its findings. Save a collection to share your selection of sources.