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Intrinsic tunneling study of underdoped Bi_2Sr_(2-x)La_xCuO_(6+δ) superconductors

Intrinsic tunneling study of underdoped Bi_2Sr_(2-x)La_xCuO_(6+δ) superconductors
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摘要 We report on a tunneling study of underdoped submicron Bi2Sr2_xLasCuO_6+δ (La-Bi2201) intrinsic Josephson junctions (IJJs), whose self-heating is sufficiently suppressed. The tunneling spectra are measured from 4.2 K up to the pseudogap opening temperature of T* = 260 K. The gap value found from the spectral peak position is about 35 meV and has a weak temperature dependence both below and above the superconducting transition temperature of Tc = 29 K. Since the superconducting gap should have a value of 10-15 meV, our results indicate that the pseudogap (~35 meV) plays an important role in the underdoped La-Bi2201 intrinsic tunneling spectroscopy down to the lowest temperature of 4.2 K. However, the contribution of the superconducting gap can be separated by normalizing the spectra to the one near and above Tc, which shows that the IJJs can be a useful tool for the study of the electronic properties of the La-Bi2201 cuprate superconductors. We report on a tunneling study of underdoped submicron Bi2Sr2_xLasCuO_6+δ (La-Bi2201) intrinsic Josephson junctions (IJJs), whose self-heating is sufficiently suppressed. The tunneling spectra are measured from 4.2 K up to the pseudogap opening temperature of T* = 260 K. The gap value found from the spectral peak position is about 35 meV and has a weak temperature dependence both below and above the superconducting transition temperature of Tc = 29 K. Since the superconducting gap should have a value of 10-15 meV, our results indicate that the pseudogap (~35 meV) plays an important role in the underdoped La-Bi2201 intrinsic tunneling spectroscopy down to the lowest temperature of 4.2 K. However, the contribution of the superconducting gap can be separated by normalizing the spectra to the one near and above Tc, which shows that the IJJs can be a useful tool for the study of the electronic properties of the La-Bi2201 cuprate superconductors.
出处 《Chinese Physics B》 SCIE EI CAS CSCD 2011年第11期469-472,共4页 中国物理B(英文版)
基金 supported by the National Natural Science Foundation of China(Grant No.10974242) the National Basic Research Program of China(Grant No.2011CBA00106)
关键词 Bi2Sr2_xLasCuO_6+δ intrinsic Josephson junctions tunneling spectra superconductinggap PSEUDOGAP Bi2Sr2_xLasCuO_6+δ intrinsic Josephson junctions tunneling spectra superconductinggap pseudogap
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