arXiv · 2510.13874
Spontaneous Breaking of the SU(3) Flavor Symmetry in a Quantum Hall Valley Nematic
Abstract
Two-dimensional quantum materials can host original electronic phases that arise from the interplay of electronic correlations, symmetry and topology. In particular, the spontaneous breaking of internal symmetry that acts simultaneously on the pseudospin and the spatial degree of freedom realizes a nematic ordering. We report evidence of a quantum Hall valley nematic phase with an underlying SU(3) order parameter space obtained by a spontaneous polarization between the threefold degenerate valley pseudospins in Pb1-xSnxSe quantum wells. In the presence of a Zeeman field, we demonstrate a further control of the nematic ordering with an explicit symmetry breaking. Evidence of both spontaneous and explicit SU(3) symmetry breaking, reminiscent of the quark flavor paradigm, is of fundamental interest to shape the many body physics in a SU(3) system.
Explore related subjects
Keep this discovery
G. Krizman, A. Kazakov, C. -W. Cho, V. V. Volobuev, A. Majou, E. Ben Achour, T. Wojtowicz, G. Bauer, Y. Guldner, B. A. Piot, Th. Jolicoeur, G. Springholz, L. -A. de Vaulchier. 2025-10-13. Spontaneous Breaking of the SU(3) Flavor Symmetry in a Quantum Hall Valley Nematic. https://doi.org/10.1103/y8bd-y5ht
Cite the original work for its findings. Save a collection to share your selection of sources.