Nonperturbative approach to boron arsenide isotope disorder reveals coherently mixed vibrations that reshape the dielectric function and allow two-fold tuning of radiative heat flux through surface phonon polariton resonance.
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Nonperturbative isotope effect on light-matter interaction in boron arsenide
Nonperturbative approach to boron arsenide isotope disorder reveals coherently mixed vibrations that reshape the dielectric function and allow two-fold tuning of radiative heat flux through surface phonon polariton resonance.