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Frequency and temperature dependence of the dielectric and AC electrical conductivity in (Ni/Au)/AlGaN/AlN/GaN heterostructures

机译:(Ni / Au)/ AlGaN / AlN / GaN异质结构中介电常数和AC电导率的频率和温度依赖性

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摘要

The dielectric properties and AC electrical conductivity (σ ac)of the (Ni/Au)/Al 0.22Ga 0.78N/AlN/GaN heterostructures, with and without the SiNx passivation, have been investigated by capacitance-voltage and conductance-voltage measurements in the wide frequency (5kHz-5 MHz) and temperature (80-400 K) range. The experimental values of the dielectric constant (ε'), dielectric loss (ε' '), loss tangent (tand), σ ac and the real and imaginary part of the electric modulus (M' and M' ') were found to be a strong function of frequency and temperature. A decrease in the values of ε' and ε' ' was observed, in which they both showed an increase in frequency and temperature. The values of M' and M' ' increase with increasing frequency and temperature. The σ ac increases with increasing frequency, while it decreases with increasing temperature. It can be concluded, therefore, that the interfacial polarization can occur more easily at low frequencies and temperatures with the number of interface states density located at the metal/semiconductor interface. It contributes to the e' and σ ac. © 2009 Elsevier B.V. All rights reserved.
机译:通过电容-电压和电导-电压测量,研究了(Ni / Au)/ Al 0.22Ga 0.78N / AlN / GaN异质结构在有和没有SiNx钝化的情况下的介电性能和交流电导率(σac)。宽频率(5kHz-5 MHz)和温度(80-400 K)范围。介电常数(ε'),介电损耗(ε''),损耗角正切(tand),σac和电模量的实部和虚部(M'和M'')的实验值分别为频率和温度的强大功能。观察到ε'和ε''的值减小,其中它们都显示出频率和温度的增加。 M'和M''的值随着频率和温度的增加而增加。 σac随频率增加而增加,而随温度增加而减少。因此可以得出结论,界面极化在低频和低温下更容易发生,并且界面态密度的数量位于金属/半导体界面上。它有助于e'和σac。 ©2009 Elsevier B.V.保留所有权利。

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