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首页> 外文期刊>Historical studies in the natural sciences >'The Lucky Start Toward Today's Cosmology'? Serendipity, the 'Big Bang' Theory, and the Science of Radio Noise in Cold War America
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'The Lucky Start Toward Today's Cosmology'? Serendipity, the 'Big Bang' Theory, and the Science of Radio Noise in Cold War America

机译:“幸运地开始于今天的宇宙学”? Serendipity,“大爆炸”理论,以及冷战中的无线电噪声科学

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The discovery of cosmic microwave background radiation-an inflection point in postwar cosmology-has not lacked chroniclers, but few have drawn deeply upon the available archival record. Many accounts emphasize the serendipitous manner in which the radiation was detected. This article redefines the relative contributions of luck, skill, and circumstance to the discovery by thickening the contexts in which it occurred. In its emphasis upon the material conditions of scientific enquiry, the development of technical expertise, and the permeability of disciplinary boundaries, the article situates the discovery in the sort of explanatory context more familiar from histories of Cold War nuclear and electronics research, where funds flowed freely across a broad front of institutions and subject fields, underwriting innovation and exchange, and incentivizing the instrumentalization of basic knowledge to address real world problems-in this case, microwave radio noise. It was not research to resolve the "big-bang"/"steady-state" controversy that pulled the radiation within range of detection, but a protean technoscientific program to improve signal-to-noise ratios. The accumulation of proficiency in microwave communications at Bell Laboratories, where the radiation was detected, was as significant to the breakthrough as the expertise in theoretical astrophysics available at Princeton, where the Bell Labs measurements were linked to the "big bang." Princeton physicists, led by Robert Dicke, had already embarked on their own independent effort to detect the radiation, but evidence suggests they may not have succeeded absent the instrumental contributions made by Bell Labs.
机译:发现宇宙微波背景辐射 - 战后宇宙中的拐点 - 尚未缺乏Chronicer,但很少有人在可用的档案记录上深入绘制。许多帐户强调了检测到辐射的偶然方式。本文通过增厚其发生的背景重新定义运气,技能和环境对发现的相对贡献。在重点是科学调查的材料条件,技术专长的发展和纪律界限的渗透性,文章在冷战核电和电子研究历史中更熟悉的那种解释性背景下的发现,资金流动自由跨越机构和主题领域,承保创新和交流,并激励基本知识的仪器化,以解决现实世界问题 - 在这种情况下,微波无线电噪声。解决“Big-Bang”/“稳态”争议并不是研究,使辐射在检测范围内拉动,而是一种改善信噪比比的议会技术计划。钟到检测到辐射的微波通信熟练程度的积累与普林斯顿的理论天体物理学的专业知识具有突破,贝尔实验室测量与“大爆炸”相关联。由Robert Dicke领导的普林斯顿物理学家已经开始探讨自己独立的努力来检测辐射,但证据表明他们可能没有成功缺席贝尔实验室所取得的工具捐款。

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