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.
Title resolution pending
2 Pith papers cite this work. Polarity classification is still indexing.
years
2026 2representative citing papers
Quantum versus classical modeling of pure dephasing in Deutsch's algorithm produces identical single-run outcomes but stark differences on repeated runs, reproduced on IBM processors and showing complex behavior in NV centers.
citing papers explorer
-
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.
-
Signatures of quantum noise in the operation of Deutsch's algorithm
Quantum versus classical modeling of pure dephasing in Deutsch's algorithm produces identical single-run outcomes but stark differences on repeated runs, reproduced on IBM processors and showing complex behavior in NV centers.