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Forced coupled motion of the nanoparticle magnetic moment and the whole nanoparticle in a viscous fluid

机译:粘性流体中纳米粒子磁矩和整个纳米粒子的强迫耦合运动

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We considered the coupled motion of the magnetic moment of a ferromagnetic uniaxial nanoparticle and its mechanical rotation about the center of mass. This particle is supposed to be placed into a viscous liquid and excited by an external alternating magnetic field. Two modes of motion were studied analytically in the noise-free approximation. Within the first mode, both the nanoparticle magnetic moment and easy axis perform small oscillations around the initial position. The oscillation amplitudes were obtained in the harmonic approximation. Just the magnetic moment demonstrates the resonant behaviour that causes the main features of the oscillation mode. Within the second mode, the nanoparticle magnetic moment and easy axis are rotated synchronously. In this case we obtained the system of algebraic equations, where the precession and lag angles of the magnetic moment and easy axis are the solutions of these equations. The results obtained allow to make an analysis of the mechanism of ferrofluids heating by alternating magnetic fields.
机译:我们考虑了铁磁单轴纳米粒子的磁矩的耦合运动及其绕质心的机械旋转。该粒子应该被放置在粘性液体中,并受到外部交变磁场的激发。在无噪声近似中分析了两种运动模式。在第一模式下,纳米粒子的磁矩和易轴都围绕初始位置执行小振荡。振荡幅度是在谐波近似中获得的。只是磁矩表明了引起振荡模式主要特征的谐振行为。在第二模式下,纳米粒子的磁矩和易轴同步旋转。在这种情况下,我们获得了代数方程组,其中磁矩和易轴的进动角和滞后角是这些方程式的解。获得的结果可以分析交变磁场对铁磁流体的加热机理。

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