Long memory from Sauerbrey equation: a case in coated quartz crystal microbalance in terms of ammonia (Q624753)
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scientific article; zbMATH DE number 5849064
| Language | Label | Description | Also known as |
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| English | Long memory from Sauerbrey equation: a case in coated quartz crystal microbalance in terms of ammonia |
scientific article; zbMATH DE number 5849064 |
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Long memory from Sauerbrey equation: a case in coated quartz crystal microbalance in terms of ammonia (English)
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9 February 2011
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Summary: The Sauerbrey equation is a useful empirical model in material science to represent the dynamics of frequency change denoted by \(\Delta f\) in an area, denoted by \(A\), of the electrode in terms of the increment of the mass, which is denoted by \(\Delta m\), loaded on the surface of the crystal under a certain resonant frequency \(f_0\). For the purpose of studying \(\Delta f\) from the point of view of time series, we first propose two types of the modified representations of the Sauerbrey equation by taking time as an argument to represent \(\Delta f\) as a function expressed by \(x(t,f_0,A,\Delta m)\) where \(t\) is time. Usually, \(\Delta f\) is studied experimentally for the performance evaluation of the tested quartz used in ammonia sensors. Its properties in time series, however, are rarely reported. This paper presents the fractal properties of \(\Delta f\). We show that \(\Delta f\) is long range dependent (LRD). Consequently, it is heavy tailed according to the Taqqu's theorem. The Hurst parameter \((H)\) of \(\Delta f\) approaches one, implying its strong long memory, providing a new explanation of the repeatability of the experiments and novel point of view of the dynamics of \(\Delta f\) relating to the Sauerbrey equation in material science.
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Sauerbrey equation
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quartz crystal
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ammonia semiring
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piezoelectric crystal
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