Parity anomaly governs the thermal Hall response of chiral superconductivity in rhombohedral graphene above and below Tc
Kumar Ghosh
Abstract
Chiral superconductivity has recently been confirmed in rhombohedral tetra- and pentalayer graphene near the BCS--BEC crossover, but no theory tells the experimentalist what thermal Hall response to expect, or why any signal should persist above the phase-coherence temperature Tc. We show that the parity anomaly of (2+1)-dimensional field theory fixes the answer exactly, at all temperatures, with no free parameters: κxy/T = (π2 kB2/6h)\,C BdG\,[Δ(T)/(2kBT)], where C BdG is the BdG Chern number and Δ(T) is the fermionic excitation gap. The BCS--BEC two-gap relation Δ2 = Δ sc2 + Δ pg2 makes the same formula govern both the condensate and pseudogap regimes, so the signal onsets at the pair-formation temperature T* rather than at Tc. Coleman--Hill non-renormalization and the c1 = 0 theorem protect this result against interactions and finite-size artefacts. Three independent numerical validations confirm the topological input at machine precision (FHS Chern numbers, Wilson-loop c1 = 0 test) and at the many-body level (DMRG on 28 converged ground states, including the real-space p+ip signature y - x = -π/2 recovered to 10-14). The theory delivers an immediate falsifiable test that requires no new experimental apparatus: the sign of κxy/T below Tc must equal the sign of the anomalous Hall resistance Rxy already measured above Tc, and four further predictions accessible by dilution-refrigerator nano-calorimetry on existing devices.
Create a lesson
Related papers
Selective suppression of electronic orders via interlayer coupling in superconducting bilayer nickelate thin films
Ziao Han, Lifen Xiang, Tianren Wang et al.
Highly anisotropic collective modes of altermagnetic superconductors with Bogoliubov Fermi surfaces
Huaisong Zhao, Peng Zou, Xia-Ji Liu et al.
Electronic structure and two-orbital model of the quadlayer La5Ni4O13
Jian-Xiang Sun, Haokan Xiao, Cui-Qun Chen et al.
Electronic Reconstruction across the Tilt-Free Transition in La3Ni2O7
Mengjie Kong, Gergely Németh, Yingpeng Yu et al.
A Different Perspective on Superconductivity in Crystalline Graphene: Exploiting Energetics
Ke Wang, Shicong Song, K. Levin
Spectroscopic Evidence for Nontrivial Band Topology in Superconducting FeTe/MnTe Heterostructure
Shiwu Su, Yu Liang, Tongrui Li et al.