Effect of Acoustic Oscillations on Non-Equilibrium State of Magnetic Domain Structure in Cubic Ni2MnGa Single Crystal

被引:0
作者
Fernandez Gonzalez, Anxo [1 ]
Sapozhnikov, Konstantin [2 ]
Pal-Val, Pavel [3 ]
Kustov, Sergey [1 ]
机构
[1] Univ Illes Balears, Dept Fis, Cra Valldemossa Km 7-5, Palma De Mallorca 07122, Spain
[2] Ioffe Inst, Solid State Phys Div, Politekhnicheskaya 26, St Petersburg 194021, Russia
[3] NAS Ukraine, B Verkin Inst Low Temp Phys & Engn, Nauky Ave 47, UA-61101 Kharkiv, Ukraine
关键词
magnetic shape memory alloys; ultrasonics; internal friction; reversible Villari effect; magnetic domain walls; INTERNAL-STRESS DISTRIBUTION; FRICTION; FIELD; TEMPERATURE; BOUNDARIES;
D O I
10.3390/ma16072547
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
Magnetic hysteresis is a manifestation of non-equilibrium state of magnetic domain walls trapped in local energy minima. Using two types of experiments we show that, after application of a magnetic field to a ferromagnet, acoustic oscillations excited in the latter can "equilibrate" metastable magnetic domain structure by triggering the motion of domain walls into more stable configurations. Single crystals of archetypal Ni2MnGa magnetic shape memory alloy in the cubic phase were used in the experiments. The magnetomechanical absorption of ultrasound versus strain amplitude was studied after step-like changes of a polarizing magnetic field. One-time hysteresis was observed in strain amplitude dependences of magnetomechanical internal friction after step-like variations of a polarizing field. We distinguish two ingredients of the strain amplitude hysteresis that are found in the ranges of linear and non-linear internal friction and show qualitatively different behavior for increasing and decreasing applied polarizing fields. The uncovered effect is interpreted in terms of three canonical magnetomechanical internal friction terms (microeddy, macroeddy and hysteretic) and attributed to "triggering" by acoustic oscillations of the irreversible motion of domain walls trapped in the metastable states. To confirm the suggested interpretation we determine the coercive field of magnetization hysteresis through the measurements of the reversible Villari effect. We show that the width of the hysteresis loops decreases when acoustic oscillations in the non-linear range of domain wall motion are excited in the crystal. The observed "equilibration" of the magnetic domain structure by acoustic oscillations is attributed to the periodic stress anisotropy field induced by oscillatory mechanical stress.
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页数:15
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共 46 条
[1]  
Aaltio I., 2016, REF MODULE MAT SCI M, DOI [10.1016/B978-0-12-803581-8.01830-0, DOI 10.1016/B978-0-12-803581-8.01830-0]
[2]  
Acet M, 2011, HBK MAGN MAT, V19, P231, DOI 10.1016/S1567-2719(11)19004-6
[4]   Sheet superconductivity in twin walls:: experimental evidence of WO3-x [J].
Aird, A ;
Salje, EKH .
JOURNAL OF PHYSICS-CONDENSED MATTER, 1998, 10 (22) :L377-L380
[5]  
Bertotti G., 1998, HYSTERESIS MAGNETISM
[6]  
Bertotti G., 2005, The Science of Hysteresis
[7]   ULTRASONIC INVESTIGATION OF THE PLASTICITY OF METAL CRYSTALS [J].
BLAHA, F ;
LANGENECKER, B .
ACTA METALLURGICA, 1959, 7 (02) :93-100
[8]   Large Non-ergodic Magnetoelastic Damping in Ni-Mn-Ga Austenite [J].
Bodnarova, Lucie ;
Sedlak, Petr ;
Heczko, Oleg ;
Seiner, Hanus .
SHAPE MEMORY AND SUPERELASTICITY, 2020, 6 (01) :89-96
[9]  
Bozorth R. M., 2003, Ferromagnetism, P595
[10]   TIME-DEPENDENT INTERNAL FRICTION IN ALUMINUM AND MAGNESIUM SINGLE CRYSTALS [J].
CHAMBERS, RH ;
SMOLUCHOWSKI, R .
PHYSICAL REVIEW, 1960, 117 (03) :725-731