量子统计学起源中的不可区分元素。费米-狄拉克统计的例子

IF 0.8 4区 物理与天体物理 Q2 HISTORY & PHILOSOPHY OF SCIENCE The European Physical Journal H Pub Date : 2022-01-05 DOI:10.1140/epjh/s13129-021-00033-6
Enric Pérez, Joana Ibáñez
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引用次数: 0

摘要

在本文中,我们讨论了费米-狄拉克统计的历史起源,重点讨论了1926年恩里科·费米的贡献。我们认为,与玻色-爱因斯坦的统计相反,这种统计在旧量子理论的通常叙述中多少被忽视了。我们的主要目标是对费米的开创性论文及其直接影响进行批判性分析。其次,我们也有兴趣评估粒子概念在1926-1927年间的状态,特别是关于量子不可区分性的萌芽。例如,我们将看到,费米-狄拉克统计在研究金属或恒星物质方面的首次应用具有技术性质,而他们的主要发起者几乎没有触及解释性问题。最后,我们将讨论1927年两个著名的物理学事件——科莫会议和第五届索尔维代表大会在这些方面的反思和评论。
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Indistinguishable elements in the origins of quantum statistics. The case of Fermi–Dirac statistics

In this paper, we deal with the historical origins of Fermi–Dirac statistics, focusing on the contribution by Enrico Fermi of 1926. We argue that this statistics, as opposed to that of Bose–Einstein, has been somewhat overlooked in the usual accounts of the old quantum theory. Our main objective is to offer a critical analysis of Fermi’s seminal paper and its immediate impact. Secondly, we are also interested in assessing the status of the particle concept in the years 1926–1927, especially regarding the germ of quantum indistinguishability. We will see, for example, that the first applications of the Fermi–Dirac statistics to the study of metals or stellar matter had a technical nature, and that their main instigators barely touched upon interpretative matters. Finally, we will discuss the reflections and remarks made in these respects in two famous events in physics of 1927, the Como conference and the fifth Solvay congress.

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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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