Energy-resolved eigenmode spectroscopy in frequency synthetic dimensions reveals boundary-localized skin states in 1D and 2D non-Hermitian lattices with energy-dependent displacement and tunable directional transport.
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2026 2representative citing papers
Sublattice symmetry in any 1D quadratic bosonic pairing Hamiltonian automatically implies an effective time-reversal symmetry of the dynamical matrix, enabling a symmetry-protected skin effect distinct from quadrature decoupling.
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Energy-Resolved Eigenmode Spectroscopy of 1-D and 2-D Non-Hermitian Skin Effects
Energy-resolved eigenmode spectroscopy in frequency synthetic dimensions reveals boundary-localized skin states in 1D and 2D non-Hermitian lattices with energy-dependent displacement and tunable directional transport.
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Symmetry as a route to generalized bosonic Kitaev chains
Sublattice symmetry in any 1D quadratic bosonic pairing Hamiltonian automatically implies an effective time-reversal symmetry of the dynamical matrix, enabling a symmetry-protected skin effect distinct from quadrature decoupling.