Exact(1)
Recently introduced approaches employ optical pumping of nitrogen-vacancy (NV) centers in diamond to achieve DNP even at ambient temperatures.
Similar(59)
As formation of nitrogen vacancies occurred, Ga atoms around nitrogen vacancies can also form a strong metallic bond.
The results of Nitrogen-Oxygen analyzer and X-ray photoelectron spectroscopy indicate that a large amount of nitrogen vacancies exist in ASN, thus oxidation of ASN may include vacancy oxidation ( oxygen atoms move into the nitrogen vacancies) and replacement oxidation ( oxygen atoms replace nitrogen atoms).
Nitrogen will not let parts oxidize easily and then it can allow for moderate pumping of vacuum.
In summary, we propose a scheme to realize ferromagnetic ordering of distant nitrogen-vacancy centers by using a mechanical resonator to mediate long-range Ising-type interaction.
We present an experimental study of the longitudinal electron-spin relaxation of ensembles of negatively charged nitrogen-vacancy (NV−) centers in diamond.
The reactor was then charged with nitrogen followed by pumping of anhydrous liquid ammonia using an ammonia delivery system (comprised of an ammonia pump and a flow meter) into the reactor at 1 1 ammonia to biomass ratio.
In addition, nanoscale magnetic sensors have been developed on the bases of nanodiamonds including nitrogen-vacancy impurities[2].
Recent advances in quantum technology have demonstrated the potential use of negatively charged nitrogen-vacancy (NV−) centers in diamond for temperature and magnetic sensing at sub-cellular levels.
In this work, we choose the radio-frequency (RF) field as a typical case and realize the measurement of RF field based on a nitrogen-vacancy (NV) center in diamond.
This paper introduces optimization technique to design the optical pulse sequence for the control of single spin dynamics in the Nitrogen-Vacancy color center, with controllable phase and optical rotation angle in different pulses.
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