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Distinct Fermi-Momentum-Dependent Energy Gaps in Deeply Underdoped Bi2212

机译:深度掺杂不足的Bi2212中与费米动量有关的能隙不同

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We used angle-resolved photoemission spectroscopy applied to deeply underdoped cuprate superconductors Bi_2Sr_2Ca_((1-x))Y_xCu_2O_8 (Bi2212) to reveal the presence of two distinct energy gaps exhibiting different doping dependence. One gap, associated with the antinodal region where no coherent peak is observed, increased with underdoping, a behavior known for more than a decade and considered as the general gap behavior in the underdoped regime. The other gap, associated with the near-nodal regime where a coherent peak in the spectrum can be observed, did not increase with less doping, a behavior not previously observed in the single particle spectra. We propose a two-gap scenario in momentum space that is consistent with other experiments and may contain important information on the mechanism of high-transition temperature superconductivity.
机译:我们将角分辨光发射光谱学应用于深掺杂的铜酸盐超导体Bi_2Sr_2Ca _((1-x))Y_xCu_2O_8(Bi2212),以揭示存在两个不同的能隙,这些能隙表现出不同的掺杂依赖性。与未结相峰未观察到的反节点区域相关的一个间隙随掺杂不足而增加,这种现象已经有十多年的历史了,被认为是掺杂不足状态下的一般间隙行为。另一个间隙与可以在光谱中观察到相干峰的近节点状态有关,但掺杂较少时并没有增加,这是以前在单个粒子光谱中未观察到的行为。我们提出了动量空间中的两个间隙方案,该方案与其他实验一致,并且可能包含有关高转变温度超导机理的重要信息。

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