# Difference between revisions of "Regular iterate"

m (Text replacement - "\$([^\$]+)\$" to "\\(\1\\)") |
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(1) \( ~ ~ ~ f^n(z)=T^m(z)\) |
(1) \( ~ ~ ~ f^n(z)=T^m(z)\) |
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− | The regular iterate can be evaluated with [[regular iteration]] of the asymptotic expansion of the [[Abel function]] \(G\) in vicinity of \(L\) and corresponding expansion of the [[ |
+ | The regular iterate can be evaluated with [[regular iteration]] of the asymptotic expansion of the [[Abel function]] \(G\) in vicinity of \(L\) and corresponding expansion of the [[superfunction]] \(F=G^{-1}\), |

− | and iterative application of the [[Transfer equation]] in order to bring the argument of the [[ |
+ | and iterative application of the [[Transfer equation]] in order to bring the argument of the [[superfunction]] to the range of values where the asymptotic expansion provides the required precision. |

==Keywords== |
==Keywords== |
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− | [[Iteration of function]], |
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− | [[Superfunciton]], |
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− | [[Abel function]], |
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[[Abel equation]], |
[[Abel equation]], |
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+ | [[Abel function]], |
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+ | [[Iteration of function]], |
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+ | [[Superfunction]], |
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[[Schroeder equation]], |
[[Schroeder equation]], |
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[[Schroeder function]], |
[[Schroeder function]], |
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[[Zooming function]] |
[[Zooming function]] |
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+ | [[Category:Abel function]] |
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+ | [[Category:English]] |
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[[Category:Iteration]] |
[[Category:Iteration]] |
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[[Category:Superfunction]] |
[[Category:Superfunction]] |
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− | [[Category:Abel function]] |
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[[Category:Transfer function]] |
[[Category:Transfer function]] |
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[[Category:Transfer equation]] |
[[Category:Transfer equation]] |
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− | [[Category:Zooming equation]] |
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[[Category:Schroeder equation]] |
[[Category:Schroeder equation]] |
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[[Category:Schroeder function]] |
[[Category:Schroeder function]] |
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[[Category:Zooming function]] |
[[Category:Zooming function]] |
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− | [[Category: |
+ | [[Category:Zooming equation]] |

## Latest revision as of 06:42, 20 July 2020

Regular iterate of some function \(T\), referred below as a transfer function, at its fixed point \(L\) is such iterate \(T^n\) that is regular at \(L\) even at non–integer values of \(n\).

In particular, for integen numbers \(m\) and \(n\!\ne\!0\), the regular iterate \(f=T^{m/n}\) is supposed to be fractional iterate of function \(T\), id est, for \(z\) in vicinity of point \(L\),

(1) \( ~ ~ ~ f^n(z)=T^m(z)\)

The regular iterate can be evaluated with regular iteration of the asymptotic expansion of the Abel function \(G\) in vicinity of \(L\) and corresponding expansion of the superfunction \(F=G^{-1}\), and iterative application of the Transfer equation in order to bring the argument of the superfunction to the range of values where the asymptotic expansion provides the required precision.

## Keywords

Abel equation, Abel function, Iteration of function, Superfunction, Schroeder equation, Schroeder function, Zooming equation, Zooming function