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Coexistence of ferromagnetic and antiferromagnetic spin correlations in La1.2Sr1.8Mn2O7

机译:La1.2Sr1.8Mn2O7中铁磁和反铁磁自旋相关性的共存

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摘要

We have investigated the antiferromagnetic (AF) spin correlations which coexist with the ferromagnetic spin excitations close to the Curie temperature T-C approximate to 128 K in the bilayer manganite La1.2Sr1.8Mn2O7 that shows colossal magnetoresistance (CMR) behavior, by inelastic neutron scattering both on a cold triple-axis and a time-of-flight neutron spectrometer. The scattered neutron intensity at Q=(0.5,0,0) could be detected at T=120 K. This intensity grows rapidly to become maximum at about T approximate to 128 K. Upon increasing the temperature, the intensity decreases very slowly and can be easily detected up to T=200 K. The temperature variation of AF correlations strongly suggests that they are of intrinsic origin. The scattered neutron intensity due to the AF correlations decreases under applied magnetic field in a very similar way as the resistivity, suggesting that the AF correlations are relevant to the CMR effect.
机译:我们研究了双层铁锰La1.2Sr1.8Mn2O7中与居里温度TC接近128 K的铁磁自旋激发共存的反铁磁(AF)自旋相关性,这两个层均通过非弹性中子散射显示了巨大的磁阻(CMR)行为。在冷三轴和飞行时间中子光谱仪上在T = 120 K时可以检测到Q =(0.5,0,0)处的散射中子强度。该强度迅速增长,并在大约128 K的T处达到最大值。随着温度的升高,强度下降非常缓慢,并且可以可以轻松检测到T = 200K。AF相关性的温度变化强烈表明它们是内在起源。由于AF相关性导致的散射中子强度在外加磁场下以与电阻率非常相似的方式降低,表明AF相关性与CMR效应有关。

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