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首页> 外文期刊>Nonlinear Processes in Geophysics Discussions >Complexity signatures in the geomagnetic iH/i component recorded by the Troms? magnetometer (70° N, 19° E) over the last quarter of a century
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Complexity signatures in the geomagnetic iH/i component recorded by the Troms? magnetometer (70° N, 19° E) over the last quarter of a century

机译:Troms记录的地磁 H 分量中的复杂性签名?在最后一个四分之一世纪中的磁力计(70°N,19°E)

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Solar disturbances, depending on the orientation of the interplanetary magnetic field, typically result in perturbations of the geomagnetic field as observed by magnetometers on the ground. Here, the geomagnetic field's horizontal component, as measured by the ground-based observatory-standard magnetometer at Troms? (70° N, 19° E), is examined for signatures of complexity. Twenty-five year-long 10 s resolution data sets are analysed for fluctuations with timescales of less than 1 day. Quantile–quantile plots are employed first, revealing that the fluctuations are better represented by Cauchy rather than Gaussian distributions. Thereafter, both spectral density and detrended fluctuation analysis methods are used to estimate values of the generalized Hurst exponent, α. The results are then compared with independent findings. Inspection and comparison of the spectral and detrended fluctuation analyses reveal that timescales between 1 h and 1 day are characterized by fractional Brownian motion with a generalized Hurst exponent of ~1.4, whereas including timescales as short as 1 min suggests fractional Brownian motion with a generalized Hurst exponent of ~1.6.
机译:太阳干扰取决于行星际磁场的方向,通常会导致地磁场的扰动,如地面上的磁力计所观察到的。在这里,地磁的水平分量,是由Troms?的地面天文台标准磁力计测得的? (70°N,19°E),进行了复杂度测试。分析了长达25年的10 s分辨率数据集的时标小于1天的波动。首先采用分位数-分位数图,这表明用柯西比高斯分布更好地表示了波动。此后,频谱密度和去趋势波动分析方法均用于估计广义赫斯特指数α的值。然后将结果与独立发现进行比较。对频谱和趋势变化的波动分析的检查和比较表明,1 h和1天之间的时间尺度具有分数布朗运动,广义Hurst指数约为1.4,而包括短至1分钟的时间尺度则表明分数布朗运动具有广义Hurst指数约为1.6。

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