Ab initio spin-phonon calculations show that direct one-phonon processes mediated by the flexural ZA acoustic branch drive the non-monotonic T1 relaxation of the hBN boron vacancy at high magnetic fields without fitting parameters.
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Phonon self-energy computation in 1H-NbSe2 shows longitudinal optical phonon softening via Kohn ladder anti-crossing, Q_CDW fixed by susceptibility-e-ph coupling convolution, and chiral softened phonons.
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Acoustic-phonon-driven spin-lattice relaxation of the hBN boron vacancy in the sub-THz regime
Ab initio spin-phonon calculations show that direct one-phonon processes mediated by the flexural ZA acoustic branch drive the non-monotonic T1 relaxation of the hBN boron vacancy at high magnetic fields without fitting parameters.
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Giant Kohn anomaly and chiral phonons in the charge density wave phase of 1H-NbSe$_2$
Phonon self-energy computation in 1H-NbSe2 shows longitudinal optical phonon softening via Kohn ladder anti-crossing, Q_CDW fixed by susceptibility-e-ph coupling convolution, and chiral softened phonons.