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    A Scanning Optical Quantum Magnetometer Based on the Hole Burning Phenomenon

    A scanning optical quantum magnetometer with submicron spatial resolution is proposed that is based on the phenomenon of hole burning in the signal of optically detected magnetic resonance (ODMR) on atomic-siz...

    A. N. Anisimov, R. A. Babunts, I. D. Breev, A. P. Bundakova in Technical Physics Letters (2019)

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    An optical quantum thermometer with submicrometer resolution based on the level anticrossing phenomenon

    An optical quantum thermometer with submicrometer resolution is proposed. Its operation is based on the physical phenomenon of the optical response in a system of spin centers in silicon carbide under conditio...

    A. N. Anisimov, R. A. Babunts, M. V. Muzafarova in Technical Physics Letters (2017)

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    An optical quantum magnetometer with submicron resolution based on the level anticrossing phenomenon

    An optical quantum magnetometer with submicron spatial resolution is proposed that is based on the phenomenon of optical response in a solid-state spin system under conditions of spin sublevel anticrossing wit...

    A. N. Anisimov, D. O. Tolmachev, R. A. Babunts in Technical Physics Letters (2016)

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    Neutron transmutation do** of silicon 30Si monoisotope with phosphorus

    Phosphorus-doped silicon 30Si monoisotope samples with a highly homogeneous impurity distribution at a concentration of 5 × 1016 cm−3 were obtained for the first time by means of neutron transmutation do**.

    A. N. Ionov, P. G. Baranov, B. Ya. Ber, A. D. Bulanov in Technical Physics Letters (2006)