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Published in: Acoustical Physics 6/2023

01-12-2023 | PHYSICAL ACOUSTICS

Reduction of the Spin–Phonon Coupling of Quadrupole Nuclei in NaF Crystals under Magnetic Saturation

Authors: V. M. Mikushev, A. M. Rochev, E. V. Charnaya

Published in: Acoustical Physics | Issue 6/2023

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Abstract

The rate of nuclear spin-lattice relaxation is determined by the efficiency of interaction between thermal phonons and nuclear spins. The results on reducing the efficiency of spin–phonon coupling by suppressing the contribution from paramagnetic centers to quadrupole nucleus relaxation are presented. The suppression has been performed by continuous magnetic action at the Larmor frequency. It is shown that, as in the presence of an acoustic field, the rate of spin-lattice relaxation of 23Na nuclei in a sodium fluoride crystal at magnetic saturation of the NMR signal does not change in the region of a negative average spin temperature. In the region of positive spin temperature, the rate of relaxation of 23Na spins significantly decreases and nuclear magnetization recovery with time is described by the sum of two exponentials. The contribution from nuclear spins with a lower efficiency of spin–phonon coupling, corresponding to the exponential with a long relaxation time, increases with increasing saturating field intensity. It is demonstrated that the efficiency of spin–phonon coupling for 19F nuclei, which do not have the quadrupole moment, does not change under the saturation conditions. The results obtained can be used for analyzing the structure of real crystals.

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Literature
1.
go back to reference A. Abragam and M. Goldman, Nuclear Magnetism: Order and Disorder (Claredon Press, Oxford, 1982; Mir, Moscow, 1984). A. Abragam and M. Goldman, Nuclear Magnetism: Order and Disorder (Claredon Press, Oxford, 1982; Mir, Moscow, 1984).
2.
go back to reference V. M. Mikushev and E. V. Charnaya, Nuclear Magnetic Resonance in Solids (St. Petersburg State Univ., St. Petersburg, 1995) [in Russian]. V. M. Mikushev and E. V. Charnaya, Nuclear Magnetic Resonance in Solids (St. Petersburg State Univ., St. Petersburg, 1995) [in Russian].
4.
go back to reference A. Bakhramov, A. L. Stolypko, E. V. Charnaya, and V. A. Shutilov, Sov. Phys. Solid State 28 (3), 470 (1986). A. Bakhramov, A. L. Stolypko, E. V. Charnaya, and V. A. Shutilov, Sov. Phys. Solid State 28 (3), 470 (1986).
5.
go back to reference A. R. Kessel’, Nuclear Acoustic Resonance (Nauka, Moscow, 1969) [in Russian]. A. R. Kessel’, Nuclear Acoustic Resonance (Nauka, Moscow, 1969) [in Russian].
6.
go back to reference V. A. Golenishchev-Kutuzov, V. V. Samartsev, N. K. Solovarov, and B. M. Khabibulin, Magnetic Quantum Acoustics (Nauka, Moscow, 1977) [in Russian]. V. A. Golenishchev-Kutuzov, V. V. Samartsev, N. K. Solovarov, and B. M. Khabibulin, Magnetic Quantum Acoustics (Nauka, Moscow, 1977) [in Russian].
7.
go back to reference M. Goldman, Spin Temperature and Nuclear Magnetic Resonance in Solids (Claredon Press, Oxford, 1970; Mir, Moscow, 1972). M. Goldman, Spin Temperature and Nuclear Magnetic Resonance in Solids (Claredon Press, Oxford, 1970; Mir, Moscow, 1972).
8.
go back to reference A. A. Kuleshov, V. M. Mikushev, A. L. Stolypko, E. V. Charnaya, and V. A. Shutilov, Sov. Phys. Solid State 28 (11), 1837 (1986). A. A. Kuleshov, V. M. Mikushev, A. L. Stolypko, E. V. Charnaya, and V. A. Shutilov, Sov. Phys. Solid State 28 (11), 1837 (1986).
9.
go back to reference A. A. Kuleshov, V. M. Mikushev, A. L. Stolypko, E. V. Charnaya, and V. A. Shutilov, Sov. Phys. Acoust. 32 (6), 523 (1986). A. A. Kuleshov, V. M. Mikushev, A. L. Stolypko, E. V. Charnaya, and V. A. Shutilov, Sov. Phys. Acoust. 32 (6), 523 (1986).
10.
go back to reference A. A. Kuleshov, V. M. Mikushev, A. L. Stolypko, E. V. Charnaya, and V. A. Shutilov, Sov. Phys. Acoust. 35 (3), 276 (1989). A. A. Kuleshov, V. M. Mikushev, A. L. Stolypko, E. V. Charnaya, and V. A. Shutilov, Sov. Phys. Acoust. 35 (3), 276 (1989).
11.
go back to reference P. Yu. Efitsenko, V. M. Mikushev, and E. V. Charnaya, JETP Lett. 54 (10), 587 (1991).ADS P. Yu. Efitsenko, V. M. Mikushev, and E. V. Charnaya, JETP Lett. 54 (10), 587 (1991).ADS
12.
go back to reference P. Yu. Efitsenko, I. O. Mavlonazarov, V. M. Mikushev, and E. V. Charnaya, Sov. Phys. Solid State 34 (6), 933 (1992). P. Yu. Efitsenko, I. O. Mavlonazarov, V. M. Mikushev, and E. V. Charnaya, Sov. Phys. Solid State 34 (6), 933 (1992).
13.
go back to reference I. O. Mavlonazarov and V. M. Mikushev, Sov. Phys. Solid State 34 (7), 1206 (1992). I. O. Mavlonazarov and V. M. Mikushev, Sov. Phys. Solid State 34 (7), 1206 (1992).
14.
go back to reference V. S. Vlasov, A. V. Golov, L. N. Kotov, V. I. Shcheglov, A. M. Lomonosov, and V. V. Temnov, Acoust. Phys. 68 (1), 18 (2022).ADSCrossRef V. S. Vlasov, A. V. Golov, L. N. Kotov, V. I. Shcheglov, A. M. Lomonosov, and V. V. Temnov, Acoust. Phys. 68 (1), 18 (2022).ADSCrossRef
15.
go back to reference I. O. Mavlonazarov, V. M. Mikushev, and E. V. Charnaya, JETP Lett. 56 (1), 13 (1992).ADS I. O. Mavlonazarov, V. M. Mikushev, and E. V. Charnaya, JETP Lett. 56 (1), 13 (1992).ADS
16.
go back to reference V. M. Mikushev and E. V. Charnaya, Acoust. Phys. 40 (1), 154 (1994).ADS V. M. Mikushev and E. V. Charnaya, Acoust. Phys. 40 (1), 154 (1994).ADS
17.
go back to reference A. Chandul, E. V. Charnaya, A. A. Kuleshov, V. M. Mikushev, and A. M. Ulyashev, J. Magn. Reson. 135 (1), 113 (1998).ADSCrossRef A. Chandul, E. V. Charnaya, A. A. Kuleshov, V. M. Mikushev, and A. M. Ulyashev, J. Magn. Reson. 135 (1), 113 (1998).ADSCrossRef
Metadata
Title
Reduction of the Spin–Phonon Coupling of Quadrupole Nuclei in NaF Crystals under Magnetic Saturation
Authors
V. M. Mikushev
A. M. Rochev
E. V. Charnaya
Publication date
01-12-2023
Publisher
Pleiades Publishing
Published in
Acoustical Physics / Issue 6/2023
Print ISSN: 1063-7710
Electronic ISSN: 1562-6865
DOI
https://doi.org/10.1134/S1063771023601103

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