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The Magnetoresistance of Nonsuperconducting Bi2Sr2CuOy Crystals

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【作者】 王楠林阮可青杨利民种燕邓明周为潘国强陈兆甲曹烈兆吴文彬周贵恩张裕恒

【Author】 WANG Nan-Lin,RUAN Ke-Qing,YANG Li-MinCHONG Yan,DENG Ming,ZHOU WeiPAN Guo-Qiang,CHEN Zhao-Jia,CAO Lie-Zhao(Department of Physics,University of Science and Technology of China,Hefei 230026,PRC)WU Wen-Bin,ZHOU Gui-En,and ZHANG Yu-Heng(Stucture Research Laboratory,University of Science and Technology of China,Hefei 230026,PRC)

【机构】 Department of PhysicsUniversity of Science and Technology of ChinaHefei 230026PRCPRC

【摘要】 <正> The normal-state charge transport of high-Tc cuprates has been one of the focuses in understanding the high-Tc mechanism.We recently studied the temperature-dependent ab-plane resistivity of Bi2Sr2CuOy crystals,and found that many of the as-grown crystals exhibited metallic conduction at high temperature,but localized behavior at low temperature.The magnetoresistance measurement has been performed on the crystals showing strong-localization behavior.It is found that in the low temperature regime the samples show positive magnetoresistance at low field,but negative at high field.The magnetic field corresponding to the maximum positive magnetoresistance shifts to the direction of low field with the increase of the temperature.However,in the high temperature regime,only the negative magnetoresistance is observed no matter how the field is.With further increase of the temperature the magnetoresistance effect becomes less prominent.By comparison of the magnetoresistance in longitudinal direction with that in

【Abstract】 The normal-state charge transport of high-Tc cuprates has been one of the focuses in understanding the high-Tc mechanism.We recently studied the temperature-dependent ab-plane resistivity of Bi2Sr2CuOy crystals,and found that many of the as-grown crystals exhibited metallic conduction at high temperature,but localized behavior at low temperature.The magnetoresistance measurement has been performed on the crystals showing strong-localization behavior.It is found that in the low temperature regime the samples show positive magnetoresistance at low field,but negative at high field.The magnetic field corresponding to the maximum positive magnetoresistance shifts to the direction of low field with the increase of the temperature.However,in the high temperature regime,only the negative magnetoresistance is observed no matter how the field is.With further increase of the temperature the magnetoresistance effect becomes less prominent.By comparison of the magnetoresistance in longitudinal direction with that in transverse direction,the contribution was confirmed mainly from the orbital effect.We compared our experimental results with the theoretical work on strong-localization regime and discussed the origin of the positive and negative magnetoresistance.

【基金】 Project supported by the National Center of Research and Development on Superconductivity.
  • 【文献出处】 Science in China,Ser.A ,中国科学A辑(英文版) , 编辑部邮箱 ,1994年11期
  • 【分类号】O73
  • 【下载频次】11
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