Difference between revisions of "File:E1efig09abc1a150.png"

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[[Complex map]]s of [[tetration]] $\mathrm{tet}_b$ to base<br>
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$b\!=\!1.5$ , left, <br>
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$b\!=\!\exp(1/\mathrm e)$ , center, and<br>
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$b\!=\!\sqrt{2}$ , right.
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$f\!=\! \mathrm{tet}(x\!+\!\mathrm i y)$ is shown in the $x,y$ plane with levels
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$~p\!=\!\Re(f)\!=\! \mathrm{const}~$ and levels
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$~q\!=\!\Im(f)\!=\! \mathrm{const}~$. The integer levels are shown with thick lines.
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This image is close to the figure 9 in the article
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<ref name="e1e">
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http://tori.ils.uec.ac.jp/PAPERS/2011e1e.pdf
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H.Trappmann, D.Kouznetsov. Computation of the Two Regular Super-Exponentials to base exp(1/e). (Mathematics of Computation, 2011, in press)
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</ref>.
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The [[C++]] generators of the pictures used in the figure are available and will be uploaded upon request.
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Copyleft 2011 by Dmitrii Kouznetsov. You may copy, modify and/or distribute the image for free but the source should be attributed.
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==References==
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<references/>
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[[Category:Tetration]]
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[[Category:Complex maps]]
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[[Category:Holomorphic functions]]

Revision as of 09:39, 21 June 2013

Complex maps of tetration $\mathrm{tet}_b$ to base
$b\!=\!1.5$ , left,
$b\!=\!\exp(1/\mathrm e)$ , center, and
$b\!=\!\sqrt{2}$ , right.

$f\!=\! \mathrm{tet}(x\!+\!\mathrm i y)$ is shown in the $x,y$ plane with levels $~p\!=\!\Re(f)\!=\! \mathrm{const}~$ and levels $~q\!=\!\Im(f)\!=\! \mathrm{const}~$. The integer levels are shown with thick lines.

This image is close to the figure 9 in the article [1].

The C++ generators of the pictures used in the figure are available and will be uploaded upon request.

Copyleft 2011 by Dmitrii Kouznetsov. You may copy, modify and/or distribute the image for free but the source should be attributed.

References

  1. http://tori.ils.uec.ac.jp/PAPERS/2011e1e.pdf H.Trappmann, D.Kouznetsov. Computation of the Two Regular Super-Exponentials to base exp(1/e). (Mathematics of Computation, 2011, in press)

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