新的纤维和图形的凸体组合

IF 0.8 3区 数学 Q2 MATHEMATICS
Mathematika Pub Date : 2025-09-12 DOI:10.1112/mtk.70043
Steven Hoehner, Sudan Xing
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引用次数: 0

摘要

介绍并研究了三种新的凸体组合:纤维组合、弦组合和图组合。这些组合是根据凸体对的纤维和图来定义的,每种操作都是经典斯坦纳对称的推广,尽管方式不同。对于纤维和弦组合,我们导出了brunn - Minkowski型不等式和相应的Minkowski第一不等式。我们还证明了一般仿射表面积相对于图和是凹的(分别是凸的),从而推广了Ye (Indiana university Math)的基本结果。J. 14(2014), 1-19)关于斯坦纳对称下一般仿射表面积的单调性。作为应用,我们推导出了凸体图组合仿射表面积的Minkowski第一不等式。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

New fiber and graph combinations of convex bodies

New fiber and graph combinations of convex bodies

New fiber and graph combinations of convex bodies

New fiber and graph combinations of convex bodies

Three new combinations of convex bodies are introduced and studied: the fiber, chord, and graph combinations. These combinations are defined in terms of the fibers and graphs of pairs of convex bodies, and each operation generalizes the classical Steiner symmetral, albeit in different ways. For the fiber and chord combinations, we derive Brunn–Minkowski-type inequalities and the corresponding Minkowski's first inequalities. We also prove that the general affine surface areas are concave (respectively, convex) with respect to the graph sum, thereby generalizing fundamental results of Ye (Indiana Univ. Math. J. 14 (2014), 1–19) on the monotonicity of the general affine surface areas under Steiner symmetrization. As an application, we deduce a corresponding Minkowski's first inequality for the affine surface area of a graph combination of convex bodies.

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来源期刊
Mathematika
Mathematika MATHEMATICS, APPLIED-MATHEMATICS
CiteScore
1.40
自引率
0.00%
发文量
60
审稿时长
>12 weeks
期刊介绍: Mathematika publishes both pure and applied mathematical articles and has done so continuously since its founding by Harold Davenport in the 1950s. The traditional emphasis has been towards the purer side of mathematics but applied mathematics and articles addressing both aspects are equally welcome. The journal is published by the London Mathematical Society, on behalf of its owner University College London, and will continue to publish research papers of the highest mathematical quality.
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