arXiv · 1412.7906
Algebraic independence of Mahler functions via radial asymptotics
Abstract
We present a new method for algebraic independence results in the context of Mahler's method. In particular, our method uses the asymptotic behaviour of a Mahler function $f(z)$ as $z$ goes radially to a root of unity to deduce algebraic independence results about the values of $f(z)$ at algebraic numbers. We apply our method to the canonical example of a degree two Mahler function; that is, we apply it to $F(z)$, the power series solution to the functional equation $F(z)-(1+z+z^2)F(z^4)+z^4F(z^{16})=0$. Specifically, we prove that the functions $F(z)$, $F(z^4)$, $F'(z)$, and $F'(z^4)$ are algebraically independent over $\mathbb{C}(z)$. An application of a celebrated result of Nishioka then allows one to replace $\mathbb{C}(z)$ by $\mathbb{Q}$ when evaluating these functions at a nonzero algebraic number $α$ in the unit disc.
Explore related subjects
Keep this discovery
Explore connections, maps & timelines
Richard P. Brent, Michael Coons, Wadim Zudilin. 2015-04-04. Algebraic independence of Mahler functions via radial asymptotics. https://doi.org/10.1093/imrn%2Frnv139
Cite the original work for its findings. Save a collection to share your selection of sources.