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Universality of the electrical transport in granular metals

机译:粒状金属中电传输的普遍性

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摘要

The universality of the ac electrical transport in granular metals has been scarcely studied and the actual mechanisms involved in the scaling laws are not well understood. Previous works have reported on the scaling of capacitance and dielectric loss at different temperatures in Co-ZrO2 granular metals. However, the characteristic frequency used to scale the conductivity spectra has not been discussed, yet. This report provides unambiguous evidence of the universal relaxation behavior of Pd-ZrO2 granular thin films over wide frequency (11 Hz-2 MHz) and temperature ranges (40-180 K) by means of Impedance Spectroscopy. The frequency dependence of the imaginary parts of both the impedance Z″ and electrical modulus M″ exhibit respective peaks at frequencies ωmax that follow a thermal activation law, ωmax ∝ exp(T1/2). Moreover, the real part of electrical conductivity σ′ follows the Jonscher's universal power law, while the onset of the conductivity dispersion also corresponds to ωmax. Interestingly enough, ωmax can be used as the scaling parameter for Z″, M″ and σ′, such that the corresponding spectra collapse onto single master curves. All in all, these facts show that the Time-Temperature Superposition Principle holds for the ac conductance of granular metals, in which both electron tunneling and capacitive paths among particles compete, exhibiting a well-characterized universal behavior.
机译:交流电传输在粒状金属中的普遍性尚未得到研究,并且对缩放定律所涉及的实际机制还没有很好的了解。先前的工作已报道了Co-ZrO2颗粒金属在不同温度下的电容和介电损耗的变化。但是,尚未讨论用于缩放电导率谱的特征频率。该报告通过阻抗谱提供了在宽频率(11 Hz-2 MHz)和温度范围(40-180 K)上Pd-ZrO2颗粒状薄膜普遍弛豫行为的明确证据。阻抗Z”和电模量M”的虚部的频率相关性在遵循热激活定律ωmax∝ exp(T1 / 2)的频率ωmax处显示出各自的峰值。此外,电导率σ'的实部遵循Jonscher的通用幂定律,而电导率色散的开始也对应于ωmax。有趣的是,ωmax可以用作Z'',M''和σ'的缩放参数,以使相应的光谱折叠到单个主曲线上。总而言之,这些事实表明,时间-温度叠加原理适用于粒状金属的交流电,其中粒子之间的电子隧穿和电容路径相互竞争,表现出良好表征的通用行为。

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