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Revealing the high-energy electronic excitations underlying the onset of high-temperature superconductivity in cuprates

机译:揭示铜酸盐中高温超导发生的高能电子激发

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In strongly correlated systems the electronic properties at the Fermi energy (EF) are intertwined with those at high-energy scales. One of the pivotal challenges in the field of high-temperature superconductivity (HTSC) is to understand whether and how the high-energy scale physics associated with Mott-like excitations (|E?EF|>1 eV) is involved in the condensate formation. Here, we report the interplay between the many-body high-energy CuO2 excitations at 1.5 and 2 eV, and the onset of HTSC. This is revealed by a novel optical pump-supercontinuum-probe technique that provides access to the dynamics of the dielectric function in Bi2Sr2Ca0.92Y0.08Cu2O8+δ over an extended energy range, after the photoinduced suppression of the superconducting pairing. These results unveil an unconventional mechanism at the base of HTSC both below and above the optimal hole concentration required to attain the maximum critical temperature (Tc).. ? 2011 Nature Publishing Group, a division of Macmillan Publishers Limited. All Rights Reserved.
机译:在高度相关的系统中,费米能级(E F )的电子性质与高能级的电子性质交织在一起。高温超导(HTSC)领域的关键挑战之一是要了解高能级物理学是否以及如何与类莫特激发(| E?E F |> 1 eV)参与冷凝水形成。在这里,我们报道了在1.5和2 eV时多体高能CuO 2 激发与HTSC发作之间的相互作用。这是通过一种新颖的光泵超连续谱探针技术揭示的,该技术可访问Bi 2 Sr 2 Ca 0.92 Y 0.08 Cu 2 O 8 +δ。这些结果揭示了在HTSC的基础上达到和达到最高临界温度(T c )所需的最佳空穴浓度的非常规机理。 2011年自然出版集团(Macmillan Publishers Limited的子公司)。版权所有。

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