Superconductivity in bilayer nickelates occurs in SDW-free oxygen-stoichiometric regions, with an interlayer five-spin polaron proposed as the ground state.
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Atomic-scale order at β-Ga₂O₃/4H-SiC interfaces preserves phonon coherence and enables record thermal boundary conductance of 231 MW m^{-2} K^{-1}.
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Interlayer Five-Spin Polaron in Superconducting Bilayer Nickelates
Superconductivity in bilayer nickelates occurs in SDW-free oxygen-stoichiometric regions, with an interlayer five-spin polaron proposed as the ground state.
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Atomic-scale order enables high thermal boundary conductance at $\beta$-Ga$_2$O$_3$/4H-SiC interfaces
Atomic-scale order at β-Ga₂O₃/4H-SiC interfaces preserves phonon coherence and enables record thermal boundary conductance of 231 MW m^{-2} K^{-1}.