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An X-ray absorption study of the electric field effect mechanism in '123' cuprates

机译:X射线吸收研究“ 123”铜酸盐中电场效应机理

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X-ray absorption spectroscopy in the presence of an electric field has been used to study the doping mechanism of the CuO_2 planes in Nd_1+χBa_2-χCu_3O_7 compounds. The electric field effect doping is well-known as a method to modify the electrical properties of a thin film using an external gate voltage and in the copper based high critical temperature superconductors (HTS), it has been used to shift the critical temperature and even to induce phase transitions. Field effect experiments in ultra-thin HTS are usually interpreted by supposing that the induced charges develop into carriers in the CuO_2 conducting planes, thus changing the filling of the Zhang-Rice (ZR) band. Here we show that the polarization charges in both insulating and superconducting films, are mainly confined in the charge reservoir, and in particular in the CuO chains. The characteristics of the charge reservoir layer determine the doping of the CuO_2 planes, achieved by transfer of a fraction of the total injected charges. Moreover we found that holes injection in the CuO_2 planes is reduced in oxygen deficient NdBCO films.
机译:电场存在下的X射线吸收光谱已被用于研究Nd_1 +χBa_2-χCu_3O_7化合物中CuO_2平面的掺杂机理。电场效应掺杂是众所周知的一种使用外部栅极电压修改薄膜电性能的方法,在铜基高临界温度超导体(HTS)中,它已用于改变临界温度甚至改变温度。引起相变。通常通过假设感应电荷在CuO_2导电平面内发展为载流子,从而改变Zhang-Rice(ZR)带的填充来解释超薄HTS中的场效应实验。在这里,我们表明,绝缘膜和超导膜中的极化电荷都主要局限在电荷池中,尤其是在CuO链中。电荷存储层的特性决定了通过转移总注入电荷的一部分来实现CuO_2平面的掺杂。此外,我们发现在缺氧的NdBCO薄膜中,CuO_2平面中的空穴注入减少了。

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