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| author | Sebastiano Tronto <sebastiano@tronto.net> | 2026-06-14 09:58:21 +0200 |
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| committer | Sebastiano Tronto <sebastiano@tronto.net> | 2026-06-14 09:58:21 +0200 |
| commit | 5ea79c7ae0d44686f1df05c4a016652afbe58968 (patch) | |
| tree | 05f6a052373f5fe0942777a48303b2f8b884cbe1 /necessity_52b/necessity_52b.tex | |
| download | kummer-notes-code-5ea79c7ae0d44686f1df05c4a016652afbe58968.tar.gz kummer-notes-code-5ea79c7ae0d44686f1df05c4a016652afbe58968.zip | |
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| 1 | \documentclass[10pt,a4paper]{article} | ||
| 2 | \usepackage[utf8]{inputenc} | ||
| 3 | \usepackage{amsmath} | ||
| 4 | \usepackage{amsthm} | ||
| 5 | \usepackage{amsfonts} | ||
| 6 | \usepackage{amssymb} | ||
| 7 | \usepackage[a4paper, top=3cm, bottom=3cm, left=2.5cm, right=2.5cm]{geometry} | ||
| 8 | |||
| 9 | \DeclareMathOperator{\alg}{alg} | ||
| 10 | \DeclareMathOperator{\obj}{Obj} | ||
| 11 | \DeclareMathOperator{\Hom}{Hom} | ||
| 12 | \DeclareMathOperator{\End}{End} | ||
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| 47 | |||
| 48 | \newcommand{\grp}{\textsc{Grp}} | ||
| 49 | \newcommand{\set}{\textsc{Set}} | ||
| 50 | \newcommand{\x}{\mathbf{x}} | ||
| 51 | \newcommand{\naturalto}{\overset{.}{\to}} | ||
| 52 | \newcommand{\qbar}{\overline{\mathbb{Q}}} | ||
| 53 | \newcommand{\zbar}{\overline{\mathbb{Z}}} | ||
| 54 | |||
| 55 | \newcommand{\pro}{\mathbb{P}} | ||
| 56 | \newcommand{\aff}{\mathbb{A}} | ||
| 57 | \newcommand{\quat}{\mathbb{H}} | ||
| 58 | \newcommand{\rea}{\mathbb{R}} | ||
| 59 | \newcommand{\kiu}{\mathbb{Q}} | ||
| 60 | \newcommand{\F}{\mathbb{F}} | ||
| 61 | \newcommand{\zee}{\mathbb{Z}} | ||
| 62 | \newcommand{\ow}{\mathcal{O}} | ||
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| 75 | \newcommand{\m}{\mathfrak{m}} | ||
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| 77 | |||
| 78 | \newcommand{\kbar}{\overline{K}} | ||
| 79 | \newtheorem{lemma}{Lemma} | ||
| 80 | |||
| 81 | \author{Sebastiano Tronto} | ||
| 82 | \title{On the Second Condition of Theorem 5.2 ($\ell=2$)} | ||
| 83 | |||
| 84 | \begin{document} | ||
| 85 | |||
| 86 | \maketitle | ||
| 87 | |||
| 88 | \textbf{Question:} is Lemma 1 of Lang's \emph{Elliptic Curves Diophantine Analysis}, Chapter 5 Section 5, page 117 (References/Kummer theory/LANG-book-EC.pdf) consistent with Jones-Rouse's Theorem 5.2, i.e. can we deduce that $F(\beta_1)$ is partially contained in $F(A[2])$ already? | ||
| 89 | |||
| 90 | I believe the answer is no. Lang is working over a base field that contains all the $\ell^\infty$ torsion of $A$, so it doesn't apply in our case (J\&R assume surjectivity of the torsion part). | ||
| 91 | |||
| 92 | A counterexample is actually given by J\&R right after the proof of the theorem (``Remark''). They don't say explicitly that $\kiu(\beta_1)\cap \kiu(A[2])=\kiu$ in this case, but I have tested this with sage (see the file \texttt{2-division-counterex.sage}): $\kiu(\beta_1)$ has degree $24$ over $\kiu$ and $\kiu(A[2])$ has degree $2$, which together imply that $[\kiu(A[2],\beta_1):\kiu(A[2])]\geq 4$, so it is maximal. | ||
| 93 | |||
| 94 | The file \texttt{2-division.sage} contains some code that looks for other counterexamples (varying the parameters of a short Weierstrass equation), but it is quite slow (about 3 minutes on my pc for each elliptic curve of which it computes the 4-torsion field). | ||
| 95 | |||
| 96 | \end{document} \ No newline at end of file | ||
