TY - JOUR
T1 - Effects of Zn substitution on the superconductivity and pseudogap in HgBa2CuO4+δ with various doping levels
AU - Yamamoto, A.
AU - Minami, K.
AU - Hu, W. Z.
AU - Miyakita, A.
AU - Izumi, M.
AU - Tajima, S.
PY - 2002/3/1
Y1 - 2002/3/1
N2 - A series of high-Tc superconductors HgBa2Cu1-xZnxO4+δ (Hg-1201, x=0 and 0.03) with various doping levels was synthesized, and the effects of Zn substitution on superconductivity and pseudogap were investigated on the basis of dc susceptibility, thermoelectric power, and electrical resistivity data. Tc decreased with Zn substitution over a wide doping range, but most strongly at a heavily underdoped state, without any appreciable change in hole concentration irrespective of doping level. A disappearance of superconductivity or a sharp drop in Tc by Zn substitution is not observed in the vicinity of p = 1/8, which suggests no enhancement of charge/spin stripe order. Analyses of temperature dependence of Seebeck coefficient S and resistivity revealed that there is no clear change with Zn substitution in the characteristic temperature T* associated with the pseudogap, while the transport data are affected below T* by Zn substitution.
AB - A series of high-Tc superconductors HgBa2Cu1-xZnxO4+δ (Hg-1201, x=0 and 0.03) with various doping levels was synthesized, and the effects of Zn substitution on superconductivity and pseudogap were investigated on the basis of dc susceptibility, thermoelectric power, and electrical resistivity data. Tc decreased with Zn substitution over a wide doping range, but most strongly at a heavily underdoped state, without any appreciable change in hole concentration irrespective of doping level. A disappearance of superconductivity or a sharp drop in Tc by Zn substitution is not observed in the vicinity of p = 1/8, which suggests no enhancement of charge/spin stripe order. Analyses of temperature dependence of Seebeck coefficient S and resistivity revealed that there is no clear change with Zn substitution in the characteristic temperature T* associated with the pseudogap, while the transport data are affected below T* by Zn substitution.
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M3 - Article
AN - SCOPUS:0141945803
SN - 0163-1829
VL - 65
SP - 1045051
EP - 1045057
JO - Physical Review B-Condensed Matter
JF - Physical Review B-Condensed Matter
IS - 10
M1 - 104505
ER -