Probabilistic magnetometry with two-spin system in diamond
- URL: http://arxiv.org/abs/2003.11925v3
- Date: Sat, 1 May 2021 00:44:55 GMT
- Title: Probabilistic magnetometry with two-spin system in diamond
- Authors: Ra\'ul Coto, Hossein T. Dinani, Ariel Norambuena, Mo Chen, and
Jer\'onimo R. Maze
- Abstract summary: We show that the hyperfine coupling between the Nitrogen-Vacancy and a nearby Carbon-13 can be used to set a post-selection protocol.
We found that for an isotopically purified sample the detection of weak magnetic fields in the $mu$T range can be achieved with a sensitivity of few nTHz$-1/2$ at cryogenic temperature ($4$ K)
- Score: 4.965114253725413
- License: http://arxiv.org/licenses/nonexclusive-distrib/1.0/
- Abstract: Solid-state magnetometers like the Nitrogen-Vacancy center in diamond have
been of paramount importance for the development of quantum sensing with
nanoscale spatial resolution. The basic protocol is a Ramsey sequence, that
imprints an external static magnetic field into phase of the quantum sensor,
which is subsequently readout. In this work we show that the hyperfine coupling
between the Nitrogen-Vacancy and a nearby Carbon-13 can be used to set a
post-selection protocol that leads to an enhancement of the sensitivity under
realistic experimental conditions. We found that for an isotopically purified
sample the detection of weak magnetic fields in the $\mu$T range can be
achieved with a sensitivity of few nTHz$^{-1/2}$ at cryogenic temperature ($4$
K), and $0.1$ $\mu$THz$^{-1/2}$ at room temperature.
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