Polar phonon dispersions in 2D materials are governed by optical-like interferences at dielectric interfaces, allowing recovery of LO-TO splitting under reflective boundary conditions.
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Quantum confinement in 2D hexagonal crystals like graphene and TMDs produces discrete electronic and excitonic spectra with strongly amplified interactions that enable correlated quantum states.
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Optical-like interference control polar-phonons dispersions in 2D materials
Polar phonon dispersions in 2D materials are governed by optical-like interferences at dielectric interfaces, allowing recovery of LO-TO splitting under reflective boundary conditions.
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Correlated Quantum Phenomena in Confined Two-Dimensional Hexagonal Crystals
Quantum confinement in 2D hexagonal crystals like graphene and TMDs produces discrete electronic and excitonic spectra with strongly amplified interactions that enable correlated quantum states.