Direct observation of photonic Landau levels and helical edge states in strained honeycomb lattices

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作者
Omar Jamadi
Elena Rozas
Grazia Salerno
Marijana Milićević
Tomoki Ozawa
Isabelle Sagnes
Aristide Lemaître
Luc Le Gratiet
Abdelmounaim Harouri
Iacopo Carusotto
Jacqueline Bloch
Alberto Amo
机构
[1] Université de Lille,Depto. de Física de Materiales e Instituto Nicolás Cabrera
[2] CNRS,Center for Nonlinear Phenomena and Complex Systems
[3] UMR 8523—PhLAM—Physique des Lasers Atomes et Molécules,Université Paris
[4] Universidad Autónoma de Madrid (UAM),Saclay, CNRS
[5] Université Libre de Bruxelles,INO
[6] Centre de Nanosciences et de Nanotechnologies,CNR BEC Center and Dipartimento di Fisica
[7] Interdisciplinary Theoretical and Mathematical Sciences Program (iTHEMS),undefined
[8] Universita di Trento,undefined
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摘要
We report the realization of a synthetic magnetic field for photons and polaritons in a honeycomb lattice of coupled semiconductor micropillars. A strong synthetic field is induced in both the s and p orbital bands by engineering a uniaxial hopping gradient in the lattice, giving rise to the formation of Landau levels at the Dirac points. We provide direct evidence of the sublattice symmetry breaking of the lowest-order Landau level wavefunction, a distinctive feature of synthetic magnetic fields. Our realization implements helical edge states in the gap between n = 0 and n = ±1 Landau levels, experimentally demonstrating a novel way of engineering propagating edge states in photonic lattices. In light of recent advances in the enhancement of polariton–polariton nonlinearities, the Landau levels reported here are promising for the study of the interplay between pseudomagnetism and interactions in a photonic system.
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