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Physical Justification for Negative Remanent Magnetization in Homogeneous Nanoparticles

机译:均相纳米粒子中剩余磁化强度的物理证明

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摘要

The phenomenon of negative remanent magnetization (NRM) has been observed experimentally in a number of heterogeneous magnetic systems and has been considered anomalous. The existence of NRM in homogenous magnetic materials is still in debate, mainly due to the lack of compelling support from experimental data and a convincing theoretical explanation for its thermodynamic validation. Here we resolve the long-existing controversy by presenting experimental evidence and physical justification that NRM is real in a prototype homogeneous ferromagnetic nanoparticle, an europium sulfide nanoparticle. We provide novel insights into major and minor hysteresis behavior that illuminate the true nature of the observed inverted hysteresis and validate its thermodynamic permissibility and, for the first time, present counterintuitive magnetic aftereffect behavior that is consistent with the mechanism of magnetization reversal, possessing unique capability to identify NRM. The origin and conditions of NRM are explained quantitatively via a wasp-waist model, in combination of energy calculations.
机译:负剩磁化现象(NRM)已在许多异质磁系统中通过实验观察到,并被认为是异常的。均质磁性材料中NRM的存在仍存在争议,主要是由于缺乏实验数据的有力支持和令人信服的热力学验证的理论解释。在这里,我们通过提供实验证据和物理证据证明NRM在原型均质铁磁纳米粒子(硫化euro纳米粒子)中是真实的,从而解决了长期存在的争议。我们提供了对主要和次要磁滞行为的新颖见解,它们阐明了观察到的倒置磁滞的真实性质并验证了​​其热力学容许性,并且首次提出了与磁化反转机理相一致的反直觉的磁后效应行为,具有独特的功能识别NRM。结合能量计算,通过黄蜂腰模型定量地解释了NRM的起源和条件。

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