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Nd0.5Ca0.5Mn1-xAlxO3 (x=0,0.03)体系中电荷有序态的超声研究
引用本文:刘毅,孔辉,苏金瑞,朱长飞.Nd0.5Ca0.5Mn1-xAlxO3 (x=0,0.03)体系中电荷有序态的超声研究[J].化学物理学报,2006,19(6):535-538.
作者姓名:刘毅  孔辉  苏金瑞  朱长飞
作者单位:中国科学技术大学材料科学与工程系,中国科学技术大学材料科学与工程系,中国科学技术大学材料科学与工程系,中国科学技术大学材料科学与工程系 合肥 230026,合肥 230026,合肥 230026,合肥 230026
基金项目:supported by the National Natural Science Foundation of China (No.10274075) and the Specialized Research Fund for the Doctoral Program of Higher Education (No.20030358056)
摘    要:系统研究了Nd0.5Ca0.5Mn1-xAlxO3(x=0,0.03)单相多晶样品在低温下的电磁性质和超声特性.电阻和磁化率测量表明,Nd0.5Ca0.5O3体系在TCO-257 K处发生了电荷有序相变.超声声速从室温开始随着温度的降低逐渐减小,并在TCO附近达到最小,之后,随着温度的进一步降低,声速急刷增加,同时伴随着一个尖锐的超声衰减峰出现.TCO附近的超声异常表明体系中存在着强烈的电-声子相互作用,该电-声子耦合来源于Mn3 的Jahn-Teller效应.在低温下,出现了另一个超声衰减峰,它的出现归结为反铁磁相与顺磁相之间的相分离现象.随着Al在Mn位的掺入,超声声速的最低点和衰减峰向低温移动,表明体系中的电荷有序态和反铁磁相均被部分抑制,

关 键 词:锰氧化物  电荷有序  相分离  超声声速与衰减
收稿时间:2006/3/20 0:00:00

Ultrasonic Study on Charge Ordering in Nd0.5Ca0.5Mn1-xAlxO3 (x=0,0.03)
Yi Liu,Hui Kong,Jin-rui Su and Chang-fei Zhu.Ultrasonic Study on Charge Ordering in Nd0.5Ca0.5Mn1-xAlxO3 (x=0,0.03)[J].Chinese Journal of Chemical Physics,2006,19(6):535-538.
Authors:Yi Liu  Hui Kong  Jin-rui Su and Chang-fei Zhu
Institution:Laboratory of Advanced Functional Materials and Devices, Department of Materials Science and Engineering, University of Science and Technology of China, Hefei 230026, China
Abstract:The ultrasonic, magnetic and transport properties of Nd0.5Ca0.5Mn1-xAlxO3(x=0, 0.03) were studied from 15 to 300 K. The temperature dependencies of resistivity and magnetization show that Nd0.5Ca0.5MnO3 undergoes a charge ordering transition at TCO-257 K. An obvious softening of the longitudinal sound velocity above TCO and a dramatic stiffening below TCO accotnpanied by an attenuation peak were observed. These features imply a strong electron-phonon interaction via the Jahn-Teller effect in the sample. Another broad attenuation peak was observed at around Tp-80 K. This anomaly is attributed to the phase separation between the antiferromagnetic (AFM) and paramagnetic (PM) phases and gives a direct evidence for spin-phonon coupling in the compound. For the x=0.03 sample, both the minimum of sound velocity and attenuation peaks shift to a lower temperature. The results indicate that the charge ordering and CE-type AFM state in Nd0.5Ca0.5MnO3 are both partially suppressed by replacing Mn with Al.
Keywords:Manganite  Charge ordering  Phase separation  Ultrasonic velocity and attenuation
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