E. Cartan’s attempt at bridge-building between Einstein and the Cosserats – or how translational curvature became to be known as torsion

IF 0.8 4区 物理与天体物理 Q2 HISTORY & PHILOSOPHY OF SCIENCE The European Physical Journal H Pub Date : 2019-02-19 DOI:10.1140/epjh/e2018-90059-x
Erhard Scholz
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引用次数: 11

Abstract

élie Cartan’s “généralisation de la notion de courbure” (1922) arose from a creative evaluation of the geometrical structures underlying both, Einstein’s theory of gravity and the Cosserat brothers generalized theory of elasticity. In both theories groups operating in the infinitesimal played a crucial role. To judge from his publications in 1922–24, Cartan developed his concept of generalized spaces with the dual context of general relativity and non-standard elasticity in mind. In this context it seemed natural to express the translational curvature of his new spaces by a rotational quantity (via a kind of Grassmann dualization). So Cartan called his translational curvature “torsion” and coupled it to a hypothetical rotational momentum of matter several years before spin was encountered in quantum mechanics.

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E. Cartan试图在爱因斯坦和哥萨克之间架起一座桥梁——或者平动曲率如何被称为扭转
1922年,卡坦提出了他的“gsamnsamralisation de la notion de courbure”,这是对爱因斯坦引力理论和科塞拉特兄弟广义弹性理论背后的几何结构的创造性评价。在这两种理论中,无限小的群体都起着至关重要的作用。从他1922年至1924年的出版物来看,Cartan在广义相对论和非标准弹性的双重背景下发展了他的广义空间概念。在这种情况下,通过旋转量(通过一种格拉斯曼二象化)来表达他的新空间的平移曲率似乎是很自然的。因此,Cartan将他的平移曲率称为“扭转”,并将其与假设的物质旋转动量相结合,而在量子力学中遇到自旋的几年前。
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来源期刊
The European Physical Journal H
The European Physical Journal H HISTORY & PHILOSOPHY OF SCIENCE-PHYSICS, MULTIDISCIPLINARY
CiteScore
1.60
自引率
10.00%
发文量
13
审稿时长
>12 weeks
期刊介绍: The purpose of this journal is to catalyse, foster, and disseminate an awareness and understanding of the historical development of ideas in contemporary physics, and more generally, ideas about how Nature works. The scope explicitly includes: - Contributions addressing the history of physics and of physical ideas and concepts, the interplay of physics and mathematics as well as the natural sciences, and the history and philosophy of sciences, together with discussions of experimental ideas and designs - inasmuch as they clearly relate, and preferably add, to the understanding of modern physics. - Annotated and/or contextual translations of relevant foreign-language texts. - Careful characterisations of old and/or abandoned ideas including past mistakes and false leads, thereby helping working physicists to assess how compelling contemporary ideas may turn out to be in future, i.e. with hindsight.
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