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NEW APPROACH TO THE CORRELATION SPECTRUM NEAR INTERMITTENCY - A QUANTUM MECHANICAL ANALOGY

机译:关联谱间歇性的一种新方法-量子力学模拟

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The correlation spectrum of fully developed one-dimensional mappings is studied near and at a weakly intermittent situation. Using a suitable infinite-matrix representation, the eigenvalue equation of the Frobenius-Perron operator is approximately reduced to the radial Schrodinger equation of the hydrogen atom. Corrections are calculated by quantum mechanical perturbation theory. Analytical expressions for the spectral properties and correlation functions are derived and checked numerically. Compared to our previous work, the accuracy of the present results is significantly higher owing to the controlled and systematic approximation scheme. [References: 12]
机译:研究了完全发展的一维映射的相关谱,该谱在附近和弱间歇情况下都可以研究。使用合适的无限矩阵表示法,Frobenius-Perron算子的特征值方程近似简化为氢原子的径向Schrodinger方程。通过量子力学微扰理论来计算校正。得出光谱特性和相关函数的解析表达式,并进行数值检查。与我们以前的工作相比,由于采用了受控的系统近似方案,因此本结果的准确性明显更高。 [参考:12]

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