Far-infrared spectra of imperfect YBaCuO films on Si substrates

P. Berberich , M. Chiusuri , S. Cunsolo , P. Dore , H. kinder , C.P. Varsamis
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引用次数: 16

Abstract

We have measured the far-infrared (FIR) transmittance of low conductivity, imperfect YBCO films deposited on Si, at both 300 K and 20 K. Test reflectance measurements were also performed at room temperature. Our aim was both to study YBCO phonons by transmission measurements and to check if FIR spectra of imperfect YBCO films can be described in the framework of the BCS theory. In order to describe our measurements, we provide exact expressions for both transmittance and reflectance, averaged with respect to the interference fringes of the substrate. By modelling the complex dielectric constant of the film, we then study the YBCO phonons which are evident in the measured spectra. The comparison between spectra of normal and superconducting phases shows that the superconducting transition affects our spectra only at very low frequencies. By considering a two fluid model in which only a small fraction of electrons becomes superconducting and by assuming an energy gap of the order of 130 cm−1, we find that our data can be explained in terms of the Mattis-Bardeen theory.

Si衬底上不完全YBaCuO薄膜的远红外光谱
我们测量了低电导率,不完美的YBCO薄膜在300 K和20 K下沉积在Si上的远红外(FIR)透过率。测试反射率测量也在室温下进行。我们的目的是通过透射测量来研究YBCO声子,并检查不完美YBCO薄膜的FIR光谱是否可以在BCS理论的框架中描述。为了描述我们的测量,我们提供了透射率和反射率的精确表达式,相对于基片的干涉条纹平均。通过模拟薄膜的复介电常数,我们研究了在测量光谱中明显存在的YBCO声子。正常相和超导相的光谱比较表明,超导跃迁只在很低的频率下影响我们的光谱。通过考虑一个只有一小部分电子成为超导的双流体模型,并假设130 cm−1数量级的能隙,我们发现我们的数据可以用Mattis-Bardeen理论来解释。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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