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掺杂锰氧化物(Nd(0.25)Sm(0.25)Sr(0.5)MnO3)和铁磁形状记忆合金(Ni2Mn(1.36)Sn(0.64))中的亚稳性和反磁热效应:比较。

Metastability and inverse magnetocaloric effect in doped manganite (Nd(0.25)Sm(0.25)Sr(0.5)MnO3) and ferromagnetic shape memory alloy (Ni2Mn(1.36)Sn(0.64)): a comparison.

机构信息

UGC-DAE Consortium for Scientific Research, Kolkata Centre, Sector III, LB-8, Salt Lake, Kolkata 700 098, India.

出版信息

J Phys Condens Matter. 2012 Sep 12;24(36):366001. doi: 10.1088/0953-8984/24/36/366001. Epub 2012 Aug 15.

DOI:10.1088/0953-8984/24/36/366001
PMID:22892947
Abstract

The manganite Nd(0.25)Sm(0.25)Sr(0.5)MnO(3) (NSSMO) shows a first-order metal to insulator transition on cooling, which is concomitant with a magnetic transition from the ferromagnetic to antiferromagnetic state. In some respect the sample shows a striking similarity with Ni-Mn-Sn based ferromagnetic shape memory alloys (FSMAs) undergoing a first-order magneto-structural transition, and efforts have been made to highlight the similarities and dissimilarities of the studied manganite with one such FSMA of composition Ni(2)Mn(1.36)Sn(0.64). From our transport and magnetic investigations, the region of transition in the NSSMO is found to be highly metastable, with a clear indication of a magnetically arrested state which persists even when the sample is cooled down to the lowest temperature of measurement. Interestingly, the studied manganite shows an inverse magnetocaloric effect similar to the FSMA. However, a striking difference between the two compositions is evident in the low-temperature magneto-transport behavior: while a clear signature of tunneling magnetoresistance is present in NSSMO due to the coexisting metallic and insulating clusters of nanometer dimension, the studied FSMA do not show such behavior due to the absence of any insulating phase in the intermetallic alloy.

摘要

钐掺杂的钕锶锰氧化物 Nd(0.25)Sm(0.25)Sr(0.5)MnO(3)(NSSMO)在冷却过程中表现出一级金属-绝缘体转变,同时伴随着从铁磁态到反铁磁态的磁转变。在某些方面,该样品与基于 Ni-Mn-Sn 的铁磁形状记忆合金(FSMAs)表现出惊人的相似性,这些合金经历了一级磁结构转变,人们努力强调所研究的锰氧化物与组成为 Ni(2)Mn(1.36)Sn(0.64)的一种 FSMAs 之间的相似性和差异性。从我们的输运和磁性研究中发现,NSSMO 的转变区域高度亚稳,存在明显的磁捕获状态,即使在将样品冷却到测量的最低温度时,这种状态也会持续存在。有趣的是,所研究的锰氧化物表现出类似于 FSMAs 的逆磁热效应。然而,两种成分之间存在明显的差异,这在低温磁输运行为中表现得很明显:虽然由于共存的纳米尺寸金属和绝缘簇,NSSMO 中存在明显的隧道磁电阻特征,但由于金属间合金中不存在任何绝缘相,研究的 FSMAs 没有表现出这种行为。

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