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Riemann-Siegel theta function : ウィキペディア英語版
Riemann–Siegel theta function
In mathematics, the Riemann–Siegel theta function is defined in terms of the Gamma function as
:\theta(t) = \arg \left(
\Gamma\left(\frac\right)
\right)
- \frac t
for real values of t. Here the argument is chosen in such a way that a continuous function is obtained and \theta(0)=0 holds, i.e., in the same way that the principal branch of the log Gamma function is defined.
It has an asymptotic expansion
:\theta(t) \sim \frac\log \frac - \frac - \frac+\frac+ \frac+\cdots
which is not convergent, but whose first few terms give a good approximation for t \gg 1. Its Taylor-series at 0 which converges for |t| < 1/2 is
\theta(t) = -\frac \log \pi + \sum_^ \frac\right) } \left(\frac\right)^
where \psi^ denotes the Polygamma function of order 2k.
The Riemann–Siegel theta function is of interest in studying the Riemann zeta function, since it can rotate the Riemann zeta function such that it becomes the totally real valued Z function on the critical line s = 1/2 + i t .
== Curve discussion ==

The Riemann–Siegel theta function is an odd real analytic function for real values of ''t''. It has 3 roots at 0 and \pm 17.8455995405\ldots and it is an increasing function for values |''t''| > 6.29, because it has exactly one minima and one maxima at \pm 6.289835988\ldots with absolute value
3.530972829\ldots. Lastly it has a unique inflection point at t=0 with \theta^\prime(0)= -\frac = -2.6860917\ldots where the theta function has its derivation minimum.

抄文引用元・出典: フリー百科事典『 ウィキペディア(Wikipedia)
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