Stoichiometric LiNbO3 exhibits intrinsically low room-temperature thermal conductivity because stronger anharmonicity and larger scattering phase space suppress phonon lifetimes by 1-2 orders of magnitude relative to high-conductivity benchmarks like cBAs.
Title resolution pending
2 Pith papers cite this work. Polarity classification is still indexing.
fields
cond-mat.mtrl-sci 2representative citing papers
Sliding bilayer altermagnets host antiferromagnetic half-metallicity and Chern insulator phases via spin-dependent interlayer hopping in ferrovalley states, demonstrated in V2OSSe by first-principles calculations.
citing papers explorer
-
Intrinsically low thermal conductivity of stoichiometric lithium niobate:Experimental measurement and microscopic origin
Stoichiometric LiNbO3 exhibits intrinsically low room-temperature thermal conductivity because stronger anharmonicity and larger scattering phase space suppress phonon lifetimes by 1-2 orders of magnitude relative to high-conductivity benchmarks like cBAs.
-
Intrinsic antiferromagnetic half-metal and topological phases from the ferrovalley states of the sliding bilayer altermagnets
Sliding bilayer altermagnets host antiferromagnetic half-metallicity and Chern insulator phases via spin-dependent interlayer hopping in ferrovalley states, demonstrated in V2OSSe by first-principles calculations.