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Effect of pressure on the steplike magnetostriction of single crystalline bilayered manganite (La0.4Pr0.6)1.2Sr1.8Mn2O7

机译:压力对单晶双层锰(La0.4Pr0.6)1.2Sr1.8Mn2O7阶梯状磁致伸缩的影响

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摘要

We report the effect of pressure on the steplike magnetostriction of single crystalline bilayered manganite (La0.4Pr0.6)1.2Sr1.8Mn2O7, for our understanding of the ultrasharp nature of the field-induced first-order transition from a paramagnetic insulator to a ferromagnetic metal phase. The application of pressure suppresses a steplike transformation and causes a broad change in the magnetostriction. The injection of an electric current to the crystal also weakens the steplike variation in both the magnetostriction and magnetoresistance. The stabilization of ferromagnetic interaction or the delocalization of charge carriers is promoted with the applied pressure or applied current, resulting in the suppressed steplike behavior. Our findings suggest that the step phenomenon is closely related to the existence of localized carriers such as the short-range charge-orbital-ordered clusters.
机译:我们报告了压力对单晶双层锰(La0.4Pr0.6)1.2Sr1.8Mn2O7的阶梯状磁致伸缩的影响,以帮助我们理解从顺磁绝缘体到铁磁的场致一阶跃迁的超尖锐性质。金属相。压力的施加抑制了阶梯状的转变并引起磁致伸缩的广泛变化。向晶体注入电流也减弱了磁致伸缩和磁阻的阶梯状变化。通过施加压力或施加电流促进铁磁相互作用的稳定或电荷载流子的离域,从而抑制了阶梯状行为。我们的发现表明,阶跃现象与诸如短程电荷轨道有序簇之类的局域载流子的存在密切相关。

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