A series representation for Riemann's zeta function and some interesting identities that follow

M. Milgram
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引用次数: 1

Abstract

Using Cauchy's Integral Theorem as a basis, what may be a new series representation for Dirichlet's function $\eta(s)$, and hence Riemann's function $\zeta(s)$, is obtained in terms of the Exponential Integral function $E_{s}(i\kappa)$ of complex argument. From this basis, infinite sums are evaluated, unusual integrals are reduced to known functions and interesting identities are unearthed. The incomplete functions $\zeta^{\pm}(s)$ and $\eta^{\pm}(s)$ are defined and shown to be intimately related to some of these interesting integrals. An identity relating Euler, Bernouli and Harmonic numbers is developed. It is demonstrated that a known simple integral with complex endpoints can be utilized to evaluate a large number of different integrals, by choosing varying paths between the endpoints.
黎曼函数的级数表示和一些有趣的恒等式
以柯西积分定理为基础,根据复变元的指数积分函数$E_{s}(i \ kappa)$,得到了狄利克雷函数$\eta(s)$的一个新的级数表示,从而得到了黎曼函数$\ζ(s)$。在此基础上,对无穷和进行了评估,将异常积分简化为已知函数,并发现了有趣的恒等式。定义了不完备函数$\zeta^{\pm}(s)$和$\eta^{\ pm}(s)$,并证明它们与这些有趣的积分密切相关。建立了欧拉数、伯努利数和调和数的一个恒等式。证明了已知的具有复杂端点的简单积分可以通过选择端点之间的变化路径来评估大量不同的积分。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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