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全息术、应用和弦论的变化本质。

Holography, application, and string theory's changing nature.

机构信息

New York University, New York, NY, USA.

出版信息

Stud Hist Philos Sci. 2022 Aug;94:72-86. doi: 10.1016/j.shpsa.2022.05.004. Epub 2022 Jun 2.

Abstract

Based on string theory's framework, the gauge/gravity duality, also known as holography, has the ability to solve practical problems in low energy physical systems like metals and fluids. Holographic applications open a path for conversation and collaboration between the theory-driven, high energy culture of string theory and fields like nuclear and condensed matter physics, which in contrast place great emphasis on the empirical evidence that experiment provides. This paper takes a look at holography's history, from its roots in string theory to its present-day applications that are challenging the cultural identity of the field. I will focus on two of these applications: holographic QCD and holographic superconductivity, highlighting some of the (often incompatible) historical influences, motives, and epistemic values at play, as well as the subcultural shifts that help the collaborations work. The extent to which holographic research - arguably string theory's most successful and prolific area - must change its subcultural identity in order to function in fields outside of string theory reflects its changing nature and the uncertain future of the field. Does string theory lose its identity in the low-energy applications that holography provides? Does holography still belong under string theory's umbrella, or is it destined to form new subcultures with each of its fields of application? I find that the answers to these questions are dynamic, interconnected, and highly dependent on string theory's relationship with its field of application. In some cases, holography can maintain the goals and values it inherited from string theory. In others, it instead adopts the goals and values of the field in which it is applied. These examples highlight a growing need for the STS community to expand its treatment of string theory regarding its relationship with empiricism and role as a theory of quantum gravity..

摘要

基于弦理论框架的规范/引力对偶性,也称为全息术,能够解决金属和流体等低能物理系统中的实际问题。全息术的应用为弦理论的理论驱动、高能文化与核物理和凝聚态物理等领域之间的对话和合作开辟了道路,而后者则非常重视实验提供的经验证据。本文回顾了全息术的历史,从它在弦理论中的根源到它目前挑战该领域文化认同的应用。我将重点介绍其中的两个应用:全息量子色动力学和全息超导,强调一些(通常是不兼容的)历史影响、动机和认知价值观,以及有助于合作的亚文化转变。全息研究——可以说是弦理论最成功和最多产的领域——必须在多大程度上改变其亚文化认同,才能在弦理论之外的领域发挥作用,这反映了它不断变化的性质和该领域的不确定未来。全息术提供的低能应用是否会使弦理论失去其身份?全息术是否仍然属于弦理论的保护伞,还是注定要与每个应用领域形成新的亚文化?我发现,这些问题的答案是动态的、相互关联的,并且高度依赖于弦理论与其应用领域的关系。在某些情况下,全息术可以保持它从弦理论继承的目标和价值观。在其他情况下,它则采用了它所应用的领域的目标和价值观。这些例子突出表明,STS 社区越来越需要扩大其对弦理论的处理方式,包括其与经验主义的关系以及作为量子引力理论的角色。

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