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On the gaps between non-zero Fourier coefficients of cusp forms of higher weight

Published 18 Feb 2016 in math.NT | (1602.05745v3)

Abstract: We show that if a modular cuspidal eigenform $f$ of weight $2k$ is $2$-adically close to an elliptic curve $E/\mathbb{Q}$, which has a cyclic rational $4$-isogeny, then $n$-th Fourier coefficient of $f$ is non-zero in the short interval $(X, X + cX{\frac{1}{4}})$ for all $X \gg 0$ and for some $c > 0$. We use this fact to produce non-CM cuspidal eigenforms $f$ of level $N>1$ and weight $k > 2$ such that $i_f(n) \ll n{\frac{1}{4}}$ for all $n \gg 0$.

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