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We argue that the relative thermal conductance between interfaces with different morphologies is controlled by crystal structure through M₌₈₍/M₂>1, the ratio between the minimum mode count on either side M₌₈₍, and the conserving modes M₂ that preserve phonon momentum transverse to the interface. Junctions with an added homogenous layer, ``uniform, '' and ``abrupt'' junctions are limited to M₂, while junctions with interfacial disorder, ``mixed, '' exploit the expansion of mode spectrum to M₌₈₍. In our studies with cubic crystals, the largest enhancement of conductance from ``abrupt'' to ``mixed'' interfaces seems to be correlated with the emergence of voids in the conserving modes, where M₂=0. Such voids typically arise when the interlayer coupling is weakly dispersive, making the bands shift rigidly with momentum. Interfacial mixing also increases alloy scattering, which reduces conductance in opposition with the mode spectrum expansion. Thus the conductance across a ``mixed'' junction does not always increase relative to that at a ``uniform'' interface.
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Carlos A. Polanco
University of California, Davis
Rouzbeh Rastgarkafshgarkolaei
Charlottesville Medical Research
Jingjie Zhang
Chinese Academy of Sciences
Physical Review B
University of Virginia
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Polanco et al. (Mon,) studied this question.
synapsesocial.com/papers/69dab88daae38ff6ad83619b — DOI: https://doi.org/10.1103/physrevb.92.144302