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Ferromagnetic resonance in amorphous nanoparticles

机译:非晶态纳米粒子中的铁磁共振

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摘要

We present the results of ferromagnetic resonance (FMR) measurements on noninteracting amorphous nanoparticle systems (Co0.25Ni0.75)(65)B-35 (CNB2) and (Fe0.25Ni0.75)(50)B-50 (FNB2) in the temperature range 10-300 K. The high-temperature results show symmetric lineshapes that indicate a low value of effective anisotropy. When cooling the linewidth increases and the lineshapes lose their symmetric shape. The lineshape can be interpreted as due to slightly elongated particles. In CNB2, we observe a sharp intensity maximum at T= 60 K, followed by a linewidth maximum and resonance field minimum at T= 50 K. The same tendency is observed in FNB2, with an intensity maximum near Tsimilar to40 K, with an increment in the linewidth and simultaneous decrease of the resonance field down to the lowest temperature, T= 10 K. Previous magnetization measurements on these systems indicate large surface effects in the same temperature region of the observed anomalies. This picture, together with simulations, permits us to explain the FMR behaviour. (C) 2004 Elsevier B.V. All rights reserved.
机译:我们提出了在非相互作用非晶纳米粒子系统(Co0.25Ni0.75)(65)B-35(CNB2)和(Fe0.25Ni0.75)(50)B-50(FNB2)上的铁磁共振(FMR)测量结果。温度范围为10-300K。高温结果显示对称线形,表示有效各向异性值较低。当冷却时,线宽增加并且线形失去其对称形状。线形可以解释为由于颗粒略微拉长。在CNB2中,我们在T = 60 K处观察到最大强度强度,然后在T = 50 K处观察到最大线宽和最小共振场。在FNB2中观察到相同的趋势,在TNB附近的强度最大值类似于40 K,并且增加在线宽和共振场同时下降到最低温度T = 10 K时。这些系统的先前磁化测量表明,在观测到的异常的相同温度区域中存在较大的表面效应。这张图片以及模拟,使我们能够解释FMR的行为。 (C)2004 Elsevier B.V.保留所有权利。

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