二球面上大小体积的矢量场

IF 0.5 4区 数学 Q3 MATHEMATICS Hiroshima Mathematical Journal Pub Date : 2021-10-14 DOI:10.32917/h2022009
R. Albuquerque
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引用次数: 0

摘要

我们考虑给定黎曼曲面上的最小体积矢量场问题,专门研究$M^\star$的情况,即去除了两个对点的任意半径的2-球面。我们讨论了单位切丛$(T^1M^\星,部分T^1M ^\星)$与定标和某个极小体积方程的同调理论。以原始方式找到了$m^\star$上最小向量域的特定族$X_{\mathrm{m},k},\:k\in\mathbb{N}$。该族在$m^\star$的任意给定开子集$\Omega$上具有无界体积,$\lim_k\mathrm{vol}({X_{\mathrm{m},k}}_{|\Omega})=+\infty$,并且确实满足极小性的必要微分方程。在区域$\Omega_1\subet\mathbb{S}^2$上发现了另一个向量场$X_\ell$,其体积小于任何其他已知的\textit{最优}向量场,该向量场被限制为$\Omega _1$。
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Vector fields with big and small volume on the 2-sphere
We consider the problem of minimal volume vector fields on a given Riemann surface, specialising on the case of $M^\star$, that is, the arbitrary radius 2-sphere with two antipodal points removed. We discuss the homology theory of the unit tangent bundle $(T^1M^\star,\partial T^1M^\star)$ in relation with calibrations and a certain minimal volume equation. A particular family $X_{\mathrm{m},k},\:k\in\mathbb{N}$, of minimal vector fields on $M^\star$ is found in an original fashion. The family has unbounded volume, $\lim_k\mathrm{vol}({X_{\mathrm{m},k}}_{|\Omega})=+\infty$, on any given open subset $\Omega$ of $M^\star$ and indeed satisfies the necessary differential equation for minimality. Another vector field $X_\ell$ is discovered on a region $\Omega_1\subset\mathbb{S}^2$, with volume smaller than any other known \textit{optimal} vector field restricted to $\Omega_1$.
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来源期刊
CiteScore
0.60
自引率
0.00%
发文量
12
审稿时长
>12 weeks
期刊介绍: Hiroshima Mathematical Journal (HMJ) is a continuation of Journal of Science of the Hiroshima University, Series A, Vol. 1 - 24 (1930 - 1960), and Journal of Science of the Hiroshima University, Series A - I , Vol. 25 - 34 (1961 - 1970). Starting with Volume 4 (1974), each volume of HMJ consists of three numbers annually. This journal publishes original papers in pure and applied mathematics. HMJ is an (electronically) open access journal from Volume 36, Number 1.
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