Spin Kinetics of Liquid 3He in Contact with a DyF3 Micropowder at Ferromagnetic Ordering of Dy3+ Ions


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Abstract

The spin kinetics of liquid 3He in contact with a mixture of LaF3 (99.67%) and DyF3 (0.33%) micropowders at temperatures of 1.5–3 K has been studied by pulsed nuclear magnetic resonance (NMR). The DyF3 is a dipolar dielectric ferromagnet with the phase transition temperature Tc= 2.55 K, whereas the diamagnetic fluoride LaF3 is a diluting substance for the optimal observation conditions of 3Не NMR in powder pores. The magnetic phase transition in DyF3 is accompanied by a considerable change in the character of fluctuations of the magnetic moments of dysprosium ions, which affect the spin kinetics of 3Не in contact with the substrate. Significant changes in the relaxations rates of the longitudinal and transverse magnetizations of 3Не have been discovered in the region of magnetic ordering of the solid matrix. The technique of studying the static and fluctuating magnetic fields of a solid matrix at low temperatures using liquid 3He as a probe has been proposed.

About the authors

E. M. Alakshin

Institute of Physics

Author for correspondence.
Email: alakshin@gmail.com
Russian Federation, Kazan, 420008

E. I. Kondratyeva

Institute of Physics; Institute of Applied Research

Email: alakshin@gmail.com
Russian Federation, Kazan, 420008; Kazan, 420111

V. V. Kuzmin

Institute of Physics

Email: alakshin@gmail.com
Russian Federation, Kazan, 420008

K. R. Safiullin

Institute of Physics; Institute of Applied Research

Email: alakshin@gmail.com
Russian Federation, Kazan, 420008; Kazan, 420111

A. A. Stanislavovas

Institute of Physics

Email: alakshin@gmail.com
Russian Federation, Kazan, 420008

A. V. Savinkov

Institute of Physics

Email: alakshin@gmail.com
Russian Federation, Kazan, 420008

A. V. Klochkov

Institute of Physics

Email: alakshin@gmail.com
Russian Federation, Kazan, 420008

M. S. Tagirov

Institute of Physics; Institute of Applied Research

Email: alakshin@gmail.com
Russian Federation, Kazan, 420008; Kazan, 420111

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