课题基金 / 基金详情

The Microscopic Nature of Spacetime and the Role of Gauge/Gravity Dualities

The Microscopic Nature of Spacetime and the Role of Gauge/Gravity Dualities
时空的微观本质以及规范/重力二元性的作用
批准号:
1620169
负责人:
Sera Cremonini
金额:
$18.0万
依托单位:
依托单位国家:
美国
项目类别:
Standard Grant
财政年份:
2016
资助国家:
美国
项目状态:
已结题
起止时间:
2016-09-01 至 2020-02-29

项目摘要

项目成果

Sera Cremonini的其他基金

相似基金

相关文献

中文摘要
翻译
该奖项资助利哈伊大学Sera Cremonini教授的研究活动。在广义相对论诞生100年后,发展一个完整的引力理论在许多方面仍然是难以捉摸的,理解它的量子机制和时空的基本结构仍然是一个挑战。弦理论的发展,以及最近引力理论和非引力理论之间某些联系的发现,为我们提供了一个具体的框架和一套新的工具来解决这些问题。 结果,我们发现了基础物理学中一些最著名的问题之间的深刻联系--从黑洞的微观成分到物质的基本结构--否则这些问题是难以解决的。拟议研究的主要目标是通过探索引力从量子力学自由度中出现的程度,对时空的微观性质有更全面的了解。 这项研究还将利用新的最新技术,以揭示强相互作用的量子系统的行为。在这些方向上的进展将导致深入了解突出的基本问题,如时空的结构,宇宙的开始和早期演化,以及黑洞的物理学。它还将在技术和工业以及基础科学方面具有潜在的长期应用,从而促进所有这些领域的国家利益。这项工作还将产生重大的广泛影响。Cremonini教授将在她的研究中涉及研究生和博士后,从而为在这一领域开始研究的初级物理学家提供关键培训。 她还计划就与她的研究相关的主题进行公开讲座,并将她的工作成果和该领域令人兴奋的新进展纳入新课程的开发中。在更技术的层面上,Cremonini将研究全息术的主要特征在多大程度上是通用的和强大的,通过研究广义引力解的微观(量子场论)描述出现的条件。重点将是确定引力系统的内部结构在多大程度上受到其对称性和几何性质的影响。这项工作的一个关键方面将是发展一个系统的程序,用于理解和编码引力时空中各种对称性的破缺。此外,部分研究将涉及描述不稳定性开始的设置,因此可用于模拟许多经历相变的量子系统。利用全息技术,克雷莫纳尼将审查的问题,重组的自由度作为一个功能的能量规模在一般量子理论。她的研究将有助于非阿贝尔规范理论的相图过渡的一般分类的发展。
英文摘要
This award funds the research activities of Professor Sera Cremonini at Lehigh University. One hundred years after the birth of general relativity, developing a full theory of gravity is still in many ways elusive, and understanding its quantum regime and the fundamental structure of spacetime remains a challenge. The development of string theory, and more recently the discovery of certain connections between gravitational theories and non-gravitational theories, has provided us with a concrete framework and a new set of tools to address such issues. As a result, we have uncovered deep connections between some of the most well-known problems in fundamental physics --- from the microscopic ingredients of black holes to the fundamental structure of matter --- that would otherwise be intractable. The primary objective of the proposed research is to develop a more complete understanding of the microscopic nature of spacetime, by exploring the extent to which gravity emerges from quantum-mechanical degrees of freedom. This research will also utilize novel recent techniques in order to shed light on the behavior of quantum systems that are strongly interacting. Progress in these directions will lead to insights into outstanding fundamental questions such as the structure of spacetime, the beginning and early evolution of the universe, and the physics of black holes. It will also have potential long-term applications to technology and industry as well as fundamental science, thereby advancing the national interest in all of these areas. This work will also have significant broader impacts. Professor Cremonini will involve graduate students and postdocs in her research, thus providing critical training for junior physicists beginning research in this field. She also plans to give public lectures on topics related to her research, and incorporate the results of her work and exciting new advances in the field into the development of new courses.At a more technical level, Cremonini will examine the extent to which the main features of holography are generic and robust, by studying the conditions for the emergence of a microscopic (quantum field theoretic) description for broad classes of gravitational solutions. The focus will be on determining to what extent the internal structure of a gravitational system is affected by its symmetries and geometrical properties. A crucial aspect of this work will be the development of a systematic procedure for understanding and encoding the breaking of various symmetries in gravitational spacetimes. Moreover, part of the research will involve setups that describe the onset of instabilities and can therefore be used to model a number of quantum systems which undergo phase transitions. Using the techniques of holography, Cremonini will examine the question of the reorganization of degrees of freedom as a function of energy scale in generic quantum theories. Her research will contribute to the development of a general classification of transitions in the phase diagram of non-abelian gauge theories.
期刊论文(0)
专著(0)
科研奖励(0)
会议论文
Strings, Gravity and Strongly Coupled Matter
  • 批准号:
    2210271
  • 项目类别:
    Standard Grant
  • 资助金额:
    $41.5万
  • 财政年份:
    2022
  • 负责人:
    Sera Cremonini
  • 依托单位:
Gravity, Holography and Strongly Coupled Quantum Matter.
  • 批准号:
    1915038
  • 项目类别:
    Continuing Grant
  • 资助金额:
    $21.0万
  • 财政年份:
    2019
  • 负责人:
    Sera Cremonini
  • 依托单位:
海外基金