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【直播】【哥白尼论坛】诺奖得主彭罗斯:从黑洞到(循环)宇宙的革命之路

KouShare 蔻享学术 2022-07-05





2022年3月17日(周四)21:00,著名天体物理学家Roger Penrose爵士在“哥白尼线上论坛”上为大家带来题目为 “The Route from Black-Hole Singularities to a Cyclic Cosmology”的主题演讲。
本次活动由蔻享学术和墨子沙龙共同进行网络直播。

本次直播为Colloquium(学术讨论会)形式,需要一定的物理基础。演讲语言为英语


直播信息

报告题目

从黑洞到(循环)宇宙的革命之路

The Route from Black-Hole Singularities to a Cyclic Cosmology

报告人(单位)

彭罗斯(Roger Penrose-University of Oxford)

直播时间

2022年3月17日 21:00

直播二维码


嘉宾简介

罗杰·彭罗斯(Roger Penrose):英国数学物理学家、牛津大学数学系名誉教授。他在数学物理方面做出众多有影响力的工作,特别是对广义相对论与宇宙学做出了重要贡献。因发现“黑洞的形成是广义相对论的确凿预测”而获得2020年诺贝尔物理学奖。


报告摘要

The “singularity theorems” of the 1960s, demonstrated that large enough celestial bodies, or collections of such bodies, would, collapse gravitationally, to singularities, where the equations and usual assumptions of Einstein’s classical theory of general relativity cannot be mathematically continued. These singularities are normally expected to lie deep within what are now referred to as black holes, and would, themselves, not be observable from the outside. Nevertheless, their presence is fundamentally problematic for classical physics and it is normally argued that a quantum theory of gravity would be needed to resolve the issue.
Similar arguments (developed largely by Stephen Hawking) apply to the “Big-Bang” picture of the origin of the universe, showing, again, the inevitability of a singularity in the universe’s initial state. However, a puzzling yet fundamental distinction between these two types of singularity is found, deeply connected with the 2nd law of thermodynamics. Accordingly, it is hard to see how any ordinary procedures of “quantization” of the gravitational field can resolve this fundamental problem. A possible route to addressing this issue, namely to “gravitize” quantum mechanics, aimed at providing an objective theory of wave-function collapse, will be briefly discussed.
Nevertheless, a deeper understanding of the special nature of the Big Bang can be illuminated by examining it from the perspective of conformal geometry, according to which the Big-Bang singularity becomes non-singular, this being quite different from the situation arising from the singularities in black holes. In conformal geometry, big and small become equivalent, which can only hold for a singularity of the type we seem to find at the Big Bang. This situation is also relevant in relating the extremely hot and dense Big Bang to the extremely cold and rarefied remote future of a previous “cosmic aeon”, leading to the picture of conformal cyclic cosmology (CCC) according to which our Big Bang is viewed as the conformally continued remote future of a previous cosmic aeon. It turns out that there are now certain strong observational signals, providing some remarkable support for this highly non-intuitive but mathematically consistent CCC picture.


扩展阅读

 

1.【哥白尼论坛】Wave dark matter

2.【哥白尼线上论坛】从月球上观测宇宙

3.【哥白尼线上论坛】哈勃常数的测量疑云:宇宙学面临危机吗?

4.【哥白尼线上论坛】引力波天文学:基于LIGO/VIRGO数据

5.【哥白尼线上论坛】丘成桐教授:广义相对论中黑洞的存在和内禀角动量


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