Strong evidence for the discovery of a gravitational wave background

IF 44.8 1区 物理与天体物理 Q1 PHYSICS, APPLIED
Chiara Caprini
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引用次数: 0

Abstract

In 2023, pulsar timing arrays announced what could become the first ever discovery of a stochastic gravitational wave background: the random superposition of gravitational waves permeating the cosmos — a vestige of cosmic processes in the Universe. Upcoming datasets are expected to confirm the discovery and provide insight into the origin of this signal. In 2023, pulsar timing arrays announced what could become the first ever discovery of a stochastic gravitational wave background: the random superposition of gravitational waves permeating the cosmos — a vestige of cosmic processes in the Universe.

Abstract Image

Abstract Image

发现引力波背景的有力证据
2023 年,脉冲星定时阵列宣布可能首次发现随机引力波背景:宇宙中弥漫的引力波的随机叠加--宇宙进程在宇宙中的遗迹。接下来的数据集有望证实这一发现,并让人们深入了解这一信号的起源。2023 年,脉冲星定时阵列宣布了一项可能成为史无前例的随机引力波背景发现:宇宙中弥漫的引力波的随机叠加--宇宙中宇宙进程的遗迹。
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来源期刊
CiteScore
47.80
自引率
0.50%
发文量
122
期刊介绍: Nature Reviews Physics is an online-only reviews journal, part of the Nature Reviews portfolio of journals. It publishes high-quality technical reference, review, and commentary articles in all areas of fundamental and applied physics. The journal offers a range of content types, including Reviews, Perspectives, Roadmaps, Technical Reviews, Expert Recommendations, Comments, Editorials, Research Highlights, Features, and News & Views, which cover significant advances in the field and topical issues. Nature Reviews Physics is published monthly from January 2019 and does not have external, academic editors. Instead, all editorial decisions are made by a dedicated team of full-time professional editors.
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