首页> 外文期刊>Materials transactions >Influence of Grain Boundary on Magnetoresistance in Hole Doped Manganites La_(0.7)Ca_(0.3)MnO_3, La_(0.7)Sr_(0.3)MnO_3 and (La_(0.75)Y_(0.25))_(0.7)Sr_(0.3)MnO_3
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Influence of Grain Boundary on Magnetoresistance in Hole Doped Manganites La_(0.7)Ca_(0.3)MnO_3, La_(0.7)Sr_(0.3)MnO_3 and (La_(0.75)Y_(0.25))_(0.7)Sr_(0.3)MnO_3

机译:晶界对空穴掺杂锰La_(0.7)Ca_(0.3)MnO_3,La_(0.7)Sr_(0.3)MnO_3和(La_(0.75)Y_(0.25))_(0.7)Sr_(0.3)MnO_3的磁阻的影响

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摘要

Magnetoresistance (defined in the study as DELTA rho(T, H)/rho(T, 0) = (rho(T, H)-rho(T, 0))/rho(T, 0), where rho(T, H) and rho(T, 0) denote the resistivity at a temperature with and without a magnetic field, respectively) of single crystal and polycrystalline La_(0.7)Ca_(0.3)MnO_3, polycrystalline La_(0.7)Sr_(0.3)MnO_3 and (La_(0.75)Y_(0.25))_(0.7)Sr_(0.3)MnO_3 has been studied in order to know the influence of grain boundary on magnetoresistance. As a result, the following characteristics are found. (i) Magnetoresistance of polycrystalline La_(0.7)Ca_(0.3)MnO_3 and (La_(0.75)Y_(0.25))_(0.7)Sr_(0.3)MnO_3, whose grain sizes are about 10 mu m, drastically decreases at a low magnetic field about 200 kA/m (for example, about 20 percent decrease at 4.2K), and gradually decreases with increasing magnetic field up to 5.6 MA/m used in the present study, being different in case of single crystal La_(0.7)Ca_(0.3)MnO_3. This behaviour of magnetoresistance of the present polycrystalline specimens is quite similar to that of the polycrystalline La_(2/3)Sr_(1/3)MnO_3 previously reported and cannot be explained quantitatively by the model proposed by Raychaudhuri et al., which is derived based on the tunneling conduction mechanism through the grain boundary. (ii) Magnetoresistance of La_(0.7)Sr_(0.3)MnO_3 extremely depends on the grain size and its absolute value, |DELTA rho(T, H)/rho(T, 0)|, decreases with increasing the grain size (12 mu m, 300 mu m, 1200 mu m) at 4.2K in the range of magnetic field up to 5.6 MA/m. A characteristic feature is that there is a similar transformation of magnetoresistance for specimens with different grain sizes. (iii) Time-dependent nature of resistance exists for the present polycrystalline specimens, but not for the single crystal specimen, suggesting that the magnetism around the grain boundary should be a spin-glass like state.
机译:磁阻(在研究中定义为Δrho(T,H)/ rho(T,0)=(rho(T,H)-rho(T,0))/ rho(T,0),其中rho(T, H)和rho(T,0)分别表示单晶和多晶La_(0.7)Ca_(0.3)MnO_3,多晶La_(0.7)Sr_(0.3)MnO_3和多晶La_(0.7)Ca_(0.3)MnO_3和为了了解晶界对磁阻的影响,对(La_(0.75)Y_(0.25)_(0.7)Sr_(0.3)MnO_3进行了研究。结果,发现以下特征。 (i)晶粒尺寸约为10μm的多晶La_(0.7)Ca_(0.3)MnO_3和(La_(0.75)Y_(0.25))_(0.7)Sr_(0.3)MnO_3的磁阻在低位急剧降低大约200 kA / m的磁场(例如,在4.2K处下降约20%),并且随着本研究中使用的磁场强度增加到5.6 MA / m而逐渐减小,在单晶La_(0.7)情况下有所不同Ca_(0.3)MnO_3。本多晶样品的磁阻行为与先前报道的多晶La_(2/3)Sr_(1/3)MnO_3的行为非常相似,无法由Raychaudhuri等人提出的模型进行定量解释。基于穿过晶界的隧穿传导机制。 (ii)La_(0.7)Sr_(0.3)MnO_3的磁阻极大地依赖于晶粒尺寸,其绝对值|Δrho(T,H)/ rho(T,0)|随晶粒尺寸的增加而减小(12在4.2K的磁场强度下(μm,300μm,1200μm)在高达5.6 MA / m的磁场范围内。一个特征是,对于具有不同晶粒尺寸的样品,磁阻也有类似的转变。 (iii)目前的多晶样品存在电阻随时间的变化特性,而单晶样品则没有,这表明晶界周围的磁性应为自旋玻璃状。

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