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Containing plasma physics: A disciplinary history, 1950--1980.

机译:包含等离子体物理学:1950--1980年的学科史。

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摘要

This dissertation investigates the development of plasma physics as a scientific discipline, concentrating on the American community. Themes include the role of patronage in modifying disciplinary research interests, the interrelation of the specialties that compose a discipline, and disciplinary identity. The study begins by reviewing work on ionized gases accomplished during the late nineteenth and early twentieth centuries, in specialties concerning the Earth's ionosphere, the Aurora, and the discharge of electricity through gases.; During the late 1950s and early 1960s, a new plasma specialty, research on controlled thermonuclear fusion energy, dominated the foundation of plasma physics. The political context of the Cold War shaped the discipline, both in terms of its social makeup and its scientific style. Fusion research continued to exert a preponderant influence; during the late 1960s and early 1970s, plasma physics was transformed by research with new fusion machines (the tokamak and inertial-confinement fusion) and by political pressures born of the anti-war movement and the energy crisis.; The dissertation highlights the troubled relationship between the fusion community and the other plasma specialties. At the same time, it gives attention to scientists who attempted to link different plasma specialties in their work, especially fusion research, space physics, and astrophysics. There also is discussion of the military applications of plasma physics, such as plasma dynamics and the simulation of nuclear explosions.; Throughout its history, the plasma community nurtured visions of plasma physics that not only recognized the radical diversity of plasma behavior but also affirmed the unity of the study of “the fourth state of matter.” However, neither the American funding agencies nor the general scientific community accepted such broad visions of the discipline. The plasma community argued for funding more and more on the basis of fusion as a potential source of abundant and clean energy. The outcome was disappointing both for fusion research and for plasma physics. The American funding process proved incapable of the long-term planning needed either to follow through on its fusion commitments, or to maintain a modest program of basic plasma research.
机译:本文研究了等离子体物理学作为一门科学学科的发展,并着重于美国社会。主题包括赞助在修改学科研究兴趣中的作用,组成学科的专业之间的相互关系以及学科身份。这项研究首先回顾了在19世纪末和20世纪初完成的有关电离气体的工作,特别是涉及地球电离层,极光和通过气体排放的电。在1950年代末和1960年代初,新的等离子体专长是对受控热核聚变能的研究,主导了等离子​​体物理学的基础。冷战的政治背景决定了该学科的社会构成和科学风格。融合研究继续发挥着重要作用。在1960年代末和1970年代初,通过利用新型聚变机器(托卡马克和惯性约束聚变)的研究以及反战运动和能源危机带来的政治压力,改变了等离子体物理学。论文强调了融合社区与其他血浆专业之间的麻烦关系。同时,它也吸引了试图在其工作中联系不同等离子体专业的科学家的注意力,特别是聚变研究,空间物理学和天体物理学。还讨论了等离子体物理学在军事上的应用,例如等离子体动力学和核爆炸模拟。在其整个历史过程中,等离子体社区培育了等离子体物理学的视野,这些视野不仅认识到等离子体行为的根本多样性,而且肯定了“第四种物质状态”研究的统一性。但是,美国资助机构和普通科学界都没有接受这种学科的广泛视野。等离子社区主张在聚变的基础上提供越来越多的资金,聚变是丰富和清洁能源的潜在来源。对于融合研究和等离子体物理学而言,结果都是令人失望的。事实证明,美国的筹资过程无法满足其融合承诺或维持适度的基础血浆研究计划所需的长期计划。

著录项

  • 作者

    Weisel, Gary James.;

  • 作者单位

    University of Florida.;

  • 授予单位 University of Florida.;
  • 学科 History of Science.; History United States.; Physics Fluid and Plasma.
  • 学位 Ph.D.
  • 年度 2001
  • 页码 386 p.
  • 总页数 386
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 自然科学史;美洲史;等离子体物理学;
  • 关键词

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