The universality of pseudogap phenomenon in the normal state of high temperature cuprate superconductors

被引:2
|
作者
Lam, CC [1 ]
Vyas, A [1 ]
机构
[1] City Univ Hong Kong, Dept Phys & Mat Sci, Hong Kong, Hong Kong, Peoples R China
来源
关键词
D O I
10.1142/S0217979201006598
中图分类号
O59 [应用物理学];
学科分类号
摘要
The pseudogap phenomenon in the normal state of Sn-, Mg- and Cd-doped Hg-1223 ceramic superconductors was studied based on the results of resistivity versus temperature measurement. By using the data obtained in the resistivity measurement a logarithmic deviation of the conductivity versus inverse temperature, i.e. ln[sigma (T) - sigma (N)(T)] versus 1/T was constructed to study the pseudogap which is opened at T* far above the critical temperature T-C of the superconductors. The magnitude of the pseudogap was measured through the slope of the linear part in these plots. It is surprising that the differentiation of these plots with respect to the inverse temperature shows a constant within very wide temperature range. Similar as in the energy gap measurement in the semiconductors, this constant should represent the pseudogap of the normal state for the materials interested. The occurrence of the characteristic temperatures T*, Ts and TF can be interpreted by our microscopic theory. The physical significances of the variation in the magnitude of the pseudogap Delta (PG) with respect to temperature are related to the kinetic energy of the quasiparticles involved in the system. The plot of T* against the molar fraction of the Sn-doping a: is linear. However, the data of T* for the other doping elements Mg and Cd are scattered from the linear relationship for the Sn-doped (Hg1-x Sn-x)-1223 system. However, when we plot the relationship between T* against T-C the data of T* for different doping elements fall on the same curve of bend fingerlike shape. This indicates that the intrinsic parameters T* and Te satisfy a universal relationship. The ratio Delta (PG)/(k(B)T(F)) is expressible as a linear function of T-C when the critical temperature is below similar to 129 K; while for samples that have critical temperature greater than 129 K this ratio is expressible as a quadratic polynomial function of T-C. The universality relationship is also hold for this ratio against T-C.
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页码:2285 / 2300
页数:16
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