Research paperExperimental CharacterizationTheoreticalSuperconductivity and Ferroelectric Orbital Magnetism in Semimetallic Rhombohedral Hexalayer GrapheneJinghao Deng, Jiabin Xie, Hongyuan Li, Takashi Taniguchi et al.2025·10.48550/arXiv.2507.18598·arXiv:2508.15909AbstractRhombohedral multilayer graphene has emerged as a promising platform for exploring correlated and topological quantum phases, enabled by its Berry-curvature-bearing flat bands. While prior work has focused on separated conduction and valence bands, we probe the extensive semimetallic regime of rhombohedral hexalayer graphene. We survey a rich phase diagram dominated by flavor-symmetry breaking and reveal an electric-field-driven band inversion by fermiology. Near this inversion, we observe two superconducting-like states confined to regions with coexisting electron and hole Fermi surfaces, suggesting a possible dual-carrier origin. In addition, we identify a ferroelectric orbital magnet that undergoes sharp switching under unipolar electric fields, signaling spontaneous electric polarization. Unlike previously reported multiferroicity near zero electric field, this new state exhibits magnetic hysteresis reversible by electric field, consistent with a phenomenological model of coupled electric and magnetic polarization. Our work elucidates the correlated semimetal regime in rhombohedral graphene and underscores its potential to host diverse quantum phases.Read more
Experimental rhombohedral hexalayer graphene device used for transport measurements of the semimetallic regime.1 characterization4 properties4 figuresCStudied MaterialExpand
Research paperExperimental CharacterizationTheoreticalSuperconductivity and Ferroelectric Orbital Magnetism in Semimetallic Rhombohedral Hexalayer GrapheneJinghao Deng, Jiabin Xie, Hongyuan Li, Takashi Taniguchi et al.2025·10.48550/arXiv.2507.18598·arXiv:2508.15909AbstractRhombohedral multilayer graphene has emerged as a promising platform for exploring correlated and topological quantum phases, enabled by its Berry-curvature-bearing flat bands. While prior work has focused on separated conduction and valence bands, we probe the extensive semimetallic regime of rhombohedral hexalayer graphene. We survey a rich phase diagram dominated by flavor-symmetry breaking and reveal an electric-field-driven band inversion by fermiology. Near this inversion, we observe two superconducting-like states confined to regions with coexisting electron and hole Fermi surfaces, suggesting a possible dual-carrier origin. In addition, we identify a ferroelectric orbital magnet that undergoes sharp switching under unipolar electric fields, signaling spontaneous electric polarization. Unlike previously reported multiferroicity near zero electric field, this new state exhibits magnetic hysteresis reversible by electric field, consistent with a phenomenological model of coupled electric and magnetic polarization. Our work elucidates the correlated semimetal regime in rhombohedral graphene and underscores its potential to host diverse quantum phases.Read more
Experimental rhombohedral hexalayer graphene device used for transport measurements of the semimetallic regime.1 characterization4 properties4 figuresCStudied MaterialExpand
Research paperExperimental CharacterizationTheoreticalSuperconductivity and Ferroelectric Orbital Magnetism in Semimetallic Rhombohedral Hexalayer GrapheneJinghao Deng, Jiabin Xie, Hongyuan Li, Takashi Taniguchi et al.2025·10.48550/arXiv.2507.18598·arXiv:2508.15909AbstractRhombohedral multilayer graphene has emerged as a promising platform for exploring correlated and topological quantum phases, enabled by its Berry-curvature-bearing flat bands. While prior work has focused on separated conduction and valence bands, we probe the extensive semimetallic regime of rhombohedral hexalayer graphene. We survey a rich phase diagram dominated by flavor-symmetry breaking and reveal an electric-field-driven band inversion by fermiology. Near this inversion, we observe two superconducting-like states confined to regions with coexisting electron and hole Fermi surfaces, suggesting a possible dual-carrier origin. In addition, we identify a ferroelectric orbital magnet that undergoes sharp switching under unipolar electric fields, signaling spontaneous electric polarization. Unlike previously reported multiferroicity near zero electric field, this new state exhibits magnetic hysteresis reversible by electric field, consistent with a phenomenological model of coupled electric and magnetic polarization. Our work elucidates the correlated semimetal regime in rhombohedral graphene and underscores its potential to host diverse quantum phases.Read more
Experimental rhombohedral hexalayer graphene device used for transport measurements of the semimetallic regime.1 characterization4 properties4 figuresCStudied MaterialExpand
Research paperExperimental CharacterizationTheoreticalSuperconductivity and Ferroelectric Orbital Magnetism in Semimetallic Rhombohedral Hexalayer GrapheneJinghao Deng, Jiabin Xie, Hongyuan Li, Takashi Taniguchi et al.2025·10.48550/arXiv.2507.18598·arXiv:2508.15909AbstractRhombohedral multilayer graphene has emerged as a promising platform for exploring correlated and topological quantum phases, enabled by its Berry-curvature-bearing flat bands. While prior work has focused on separated conduction and valence bands, we probe the extensive semimetallic regime of rhombohedral hexalayer graphene. We survey a rich phase diagram dominated by flavor-symmetry breaking and reveal an electric-field-driven band inversion by fermiology. Near this inversion, we observe two superconducting-like states confined to regions with coexisting electron and hole Fermi surfaces, suggesting a possible dual-carrier origin. In addition, we identify a ferroelectric orbital magnet that undergoes sharp switching under unipolar electric fields, signaling spontaneous electric polarization. Unlike previously reported multiferroicity near zero electric field, this new state exhibits magnetic hysteresis reversible by electric field, consistent with a phenomenological model of coupled electric and magnetic polarization. Our work elucidates the correlated semimetal regime in rhombohedral graphene and underscores its potential to host diverse quantum phases.Read more
Experimental rhombohedral hexalayer graphene device used for transport measurements of the semimetallic regime.1 characterization4 properties4 figuresCStudied MaterialExpand