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我们用固相反应法合成了LaBa2Cu3-xZnxOy(0≤x≤1.0)系列样品.X-光衍射分析显示,在整个掺杂区内皆为正交结构,晶格常数a,b和c随掺杂量的增加略有增大.Zn含量的增加使体系正常态的电阻率上升.红外光谱(IR)表明:对于不掺杂的样品,在531cm-1和583cm-1附近有两个显著的吸收峰,随掺杂量x的增加前者基本不移动,后者则向高频移动,强度略有减小.电子顺磁共振实验(EPR)揭示了Zn掺杂对Cu2+的自旋关联行为的影响.本文讨论了掺杂对结构、输运性质和自旋关联的影响.

参考文献

[1] I Taguchi .[J].Japanese Journal of Applied Physics,1988,27:L1058.
[2] T Ishda .[J].Japanese Journal of Applied Physics,1988,26:L1294.
[3] J M Tarascon;E Wang;S Kiveison et al.[J].Physical Review,1990,B42:218.
[4] G Xiao;M Z Cieplak;J Q Xiao;C L Chiem .[J].Physical Review,1990,B42:8752.
[5] R Ling;T Nakamura;H Kawaji;M Itoh .[J].Physica C,1990,170(30):307.
[6] S K Agarwal;R Suryanarayanan;O Gorohov et al.[J].Solid State Communications,1991,79:857.
[7] Alex Punnoose et al.[J].International Journal of Modern Physics B,1995,9:1123.
[8] C Vaast;J A Hodges;P Bonville;A Forget .[J].Physical Review,1997,B56:7886.
[9] Shi-Dong Liang;T K Lee .[J].Physical Review,2002,B65:214529.
[10] J Bobroff et al.[J].Physical Review Letters,1999,83:4381.
[11] V Likodimos;N Guskos et al.[J].Physical Review,2000,B58:8244.
[12] N Guskos et al.[J].Physica C,2000,341-348:551.
[13] M W Shafter et al.[J].Physical Review,1989,B39:2914.
[14] Frank J. Owens .Paramagnetic resonance evidence for the opening of a spin in YBa_2Cu_(2.7)Co_(0.3)O_(7 - x)[J].Physica, C. Superconductivity and its applications,1999(1/2):23-26.
[15] S K Nikogosyan et al.[J].Physica C,1998,299:65.
[16] M D Glinchuk;A P Pechenyi .[J].Physica C,1994,220:23.
[17] A Deville;B Gaillard;H Noel;M Potel P Gougeon J C Levet.[J].Journal of Physics:Condensed Matter,1989:2357.
[18] R N de Mesquita;J H Castilho;G E Barberis;C Rettori,I Torriani,O F de Lima,S Gama,R F Jardim,M C Terrile,H Basso,O R Nascimento .[J].Physical Review,1989,B39:6694.
[19] A V Mahajan;H Alloul;G Collin;J F Marucco .[J].Physical Review Letters,1994,72:3100.
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