Spin fluctuation and small polaron conduction dominated electrical resistivity in La0.875Sr0.125MnO3 manganite nanostructures

被引:2
|
作者
Choudhary, K. K. [1 ]
Gupta, N. [1 ]
Kaurav, N. [2 ]
Katiyal, S. [3 ]
Ghosh, S. K. [4 ]
机构
[1] Natl Def Acad, Dept Phys, Pune 411023, Maharashtra, India
[2] Holkar Sci Coll, Dept Phys, Indore 452001, Madhya Pradesh, India
[3] Devi Ahilya Univ, Sch Elect, Indore 452001, Madhya Pradesh, India
[4] Vikram Univ, Sch Studies Phys, Ujjain 456010, Madhya Pradesh, India
关键词
Manganite nanoparticles; resistivity; spin fluctuation; electron-phonon interaction; electron-electron interaction; small polaron conduction; TEMPERATURE-DEPENDENT RESISTIVITY; FIELD MAGNETORESISTANCE; NANOPARTICLES; PEROVSKITES; BEHAVIOR;
D O I
10.1007/s12034-014-0049-7
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
The anomalous temperature-dependent electrical resistivity rho(T) of La0.875Sr0.125MnO3 manganite nanoparticles (particle size 18 nm) is theoretically analysed. rho(T) exhibits semiconducting phase in low-temperature regime (20 K < T < 53 K), shows a minima near 53 K and increases with Tat high temperatures (53 K < T < 170 K). The resistivity in metallic phase (T > 53 K) is theoretically analysed by considering the strong spin-fluctuation effect, which is modelled using Drude-Lorentz type function. In addition to the spin fluctuation-induced contribution, the electron-phonon and electron-electron rho(e-e)(T)= BT2 contributions are also incorporated for complete understanding of experimental data. The contributions to the resistivity by inherent acoustic phonons (rho(ac)) as well as high-frequency optical phonons (rho(op)) were estimated using Bloch-Gruneisen (BG) model of resistivity. It is observed that the resistivity contribution due to electron-electron interaction shows typical quadratic temperature dependence. Spin fluctuation-induced resistivity is dominant over electron-electron and electron-phonon contributions in overall temperature range in the manganite nanoparticles. Resistivity in the semiconducting phase is discussed with small polaron conduction (SPC) model. SPC model consistently retraces the low-temperature resistivity behaviour (T < 53 K). Finally, the theoretically calculated resistivity compared with experimental data is found to be consistent in wide range of temperature.
引用
收藏
页码:1095 / 1100
页数:6
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