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Magnetoelastic Behavior Of Rare Earth Based Intermetallics In High Magnetic Fields Up To 33 T

机译:高磁场中稀土金属间金属间机制的磁力弹性行为高达33吨

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Magnetoelastic investigations allow tests of microscopic models and theories that include crystal electric field and magnetic exchange interactions. In addition, aspects of the technical methods are of practical interest. Rare earth based antiferromagnets show a wide variety of magnetically ordered states, and transitions between them can be detected very precisely using capacitive dilatometers that sense magnetostriction. Because of the small size (direct/ 22 mm) of the dilatometer it can be operated at low temperatures in the highest steady magnetic fields available at the NHMFL Tallahassee. With care, a resolution of 10~(-6) in dl/l can be realized. The measurements of longitudinal as well as transverse components of the striction tensor of SmCu_(2) in a 33 T magnet show a strong distortion in the ac plane in fields along the easy-axis b direction. The lattice parameters a and c change by about 3X10~(-3) at 25 T. This is correlated with the field-induced transition from an antiferromagnetic to a ferromagnetic state. In fields parallel to the c axis no giant magnetostriction, as is known for other RCu_(2) compounds, could be detected.
机译:磁力弹性调查允许考验包括晶体电场和磁交换相互作用的显微模型和理论。此外,技术方法的各方面具有实际兴趣。稀土基的反磁体显示各种各样的磁性有序状态,并且可以使用感测磁致伸缩的电容膨胀仪非常精确地检测它们之间的转换。由于膨胀计的小尺寸(直接/ 22 mm),它可以在NHMFL Tallahassee提供的最高稳定磁场的低温下操作。小心,可以实现10〜( - 6)的分辨率。在33 T磁体中的SMCU_(2)的划线张量的横向部件的测量和横向于易轴B方向的田地中的横向变形。晶格参数A和C在25t时改变约3×10〜(-3)。这与从反铁磁体到铁磁状态的场引起的过渡相关。在与C轴平行的字段中,可以检测到其他RCU_(2)化合物所知的巨大磁致伸缩。

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