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We find distinct resonances of the relaxation rate (T_{1}^{-1}) when transition frequencies between the ground-state spin states of NV− centers with different orientations become degenerate.
For (bar alpha < frac {hat nu _{y}^{2}}{K}}r {K}}), modes with all orientations become thus unstable, but the maximum growth rate still corresponds to (q_{c}vec 1_{x}).
We found that the relaxation rate (T_{1}^{-1}) increases when transition frequencies in NV− centers with different orientations become degenerate and interpret this as cross-relaxation caused by dipole-dipole interaction.
It implies that the ratio of the effects of interface charge on the leakage current to that of the Ec becomes smaller, and thus, the difference between those for different silicon orientations become smaller with the decrease in the diameter of NC.
Note that orientation remains polarized until 30 hAPF, at which time orientations become randomized.
Similar(55)
Magnetic ac loss measurement of HTS tapes and films at various magnetic field orientations becomes a crucial issue from the view point of measurement precision.
Only when explicit modality is chosen, the choice between subjective and objective orientations becomes available.
Adjacent nuclei grew competitively, and at the same time, their crystal orientations became disordered, resulting in a rough edge.
For coarse ellipsoids, majority of particles tend to orient horizontally, but the preferred orientation become worse when reducing particle size.
Additionally, the moduli, regardless of print orientation, become nearly identical, indicating a more isotropic part.
We predict that coherent TiN/X(1−x−y TixAlyN and ZrN/X(1−x−y TixAlyN alloy multilayers with the [111] interfacial direction show increasing ductility with increasing x, while the multilayers with the [001] orientation become more brittle.
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