坎帕纳的特殊性概念的非阿基米德类比

IF 1.2 1区 数学 Q1 MATHEMATICS
J. Morrow, Giovanni Rosso
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引用次数: 3

摘要

设$K$是一个特征为零的代数闭的、完备的、非阿基米德值域,设$\mathscr{X}$是一个$K$ -解析空间(Huber意义上的)。在这项工作中,我们追求坎帕纳的特殊性概念的非阿基米德特征。如果存在一个连通的有限型代数群$G/K$,一个具有$\text{codim}(G^{\text{an}}\setminus \mathscr{U}) \geq 2$的稠密开子集$\mathscr{U}\subset G^{\text{an}}$和一个Zariski稠密的解析态射$\mathscr{U} \to \mathscr{X}$,我们说$\mathscr{X}$是$K$ -解析特殊的。有了这个定义,我们证明了几个结果,说明这个定义正确地捕捉了坎帕纳在非阿基米德设置的特殊性的概念。这些结果启发我们对坎帕纳的猜想做出非阿基米德式的对应。作为我们证明的准备,我们证明了关于$K$ -解析空间之间亚纯映射的不确定性轨迹的辅助结果,伪$K$ -解析Brody双曲的概念,以及亚纯映射从光滑的,不可约的$K$ -解析空间到半阿贝变体的分析的扩展。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A non-Archimedean analogue of Campana's notion of specialness
Let $K$ be an algebraically closed, complete, non-Archimedean valued field of characteristic zero, and let $\mathscr{X}$ be a $K$-analytic space (in the sense of Huber). In this work, we pursue a non-Archimedean characterization of Campana's notion of specialness. We say $\mathscr{X}$ is $K$-analytically special if there exists a connected, finite type algebraic group $G/K$, a dense open subset $\mathscr{U}\subset G^{\text{an}}$ with $\text{codim}(G^{\text{an}}\setminus \mathscr{U}) \geq 2$, and an analytic morphism $\mathscr{U} \to \mathscr{X}$ which is Zariski dense. With this definition, we prove several results which illustrate that this definition correctly captures Campana's notion of specialness in the non-Archimedean setting. These results inspire us to make non-Archimedean counterparts to conjectures of Campana. As preparation for our proofs, we prove auxiliary results concerning the indeterminacy locus of a meromorphic mapping between $K$-analytic spaces, the notion of pseudo-$K$-analytically Brody hyperbolic, and extensions of meromorphic maps from smooth, irreducible $K$-analytic spaces to the analytification of a semi-abelian variety.
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来源期刊
Algebraic Geometry
Algebraic Geometry Mathematics-Geometry and Topology
CiteScore
2.40
自引率
0.00%
发文量
25
审稿时长
52 weeks
期刊介绍: This journal is an open access journal owned by the Foundation Compositio Mathematica. The purpose of the journal is to publish first-class research papers in algebraic geometry and related fields. All contributions are required to meet high standards of quality and originality and are carefully screened by experts in the field.
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