Zero-bias anomaly and role of electronic correlations in a disordered metal film

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초록

Localization and electron correlation play significant roles in understanding the electronic states of low-dimensional systems. We carried out the tunneling spectroscopy measurements on a crystalline nano-sized island and a disordered two-dimensional metal film. The low temperature zero-bias anomalywas studied using P (E) theory and statistical analysis of the spatial distribution of the local density of states in both the systems. The effective capacitance and resistance of the tunnel junction extracted from P (E) theory gives the energy and temperature dependency of the measured ZBA. Statistical analysis reveals the electron correlation effect and the electron correlation length. By combining P (E) theory and the statistical analysis, we found that the microscopic origin of ZBA formation in the disordered two-dimensional film is strongly related to the electron localization and the correlations.

키워드

zero bias anomalydynamic Coulomb blockadedisorderlocalizationelectron correlationDENSITY-OF-STATESCONDUCTIONSPECTROSCOPYDIFFUSIONABSENCE
제목
Zero-bias anomaly and role of electronic correlations in a disordered metal film
저자
Jeon, SangjunKim, SungminKuk, Young
DOI
10.1088/1367-2630/aba3e7
발행일
2020-08
유형
Article
저널명
New Journal of Physics
22
8

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