» 引力波

引力波

2015-09-14
  • Albert Einstein
  • Rainer Weiss
  • Kip Thorne
  • Barry Barish
拥有先进探测器和正在分析数据的科学家的引力波观测站。

General relativity predicts that accelerating masses generate ripples in the fabric of spacetime called gravitational waves. These waves propagate outwards at the speed of light, carrying energy as gravitational radiation. They are created by cataclysmic cosmic 事件 like the merger of black holes or neutron stars, causing spacetime to stretch and squeeze as they pass.

Gravitational waves are disturbances in spacetime’s curvature, generated by accelerated masses, that propagate as waves from their source at light speed. Predicted by Einstein in 1916, they differ from electromagnetic waves, which are oscillations of fields *through* spacetime; gravitational waves are oscillations *of* spacetime itself. As a wave passes, it stretches and compresses space, and any objects within it, perpendicular to its direction of travel. This effect is incredibly small. For even the most violent cosmic events, the change in distance over a kilometer is less than a proton’s width, making detection extraordinarily difficult.

For decades, their existence was only inferred indirectly from the Hulse-Taylor binary pulsar, whose orbital decay matched predictions of energy loss via gravitational radiation. The first direct detection occurred on September 14, 2015, by the Laser Interferometer Gravitational-Wave Observatory (LIGO). The signal, GW150914, originated from two merging stellar-mass black holes over a billion light-years away. This landmark discovery, earning the 2017 Nobel Prize in Physics, opened a new window onto the universe. Gravitational-wave astronomy allows scientists to observe phenomena invisible to traditional telescopes, like black hole mergers, and to test general relativity in extreme gravity regimes.

UNESCO Nomenclature: 2211
- 相对论

类型

抽象系统

中断

基础

使用方法

广泛使用

前体

  • Einstein’s theory of general relativity
  • Maxwell’s equations for electromagnetic waves (as an analogy)
  • 迈克尔逊-莫雷干涉仪(作为探测器的技术基础)

应用

  • 引力波天文学,一种观察宇宙的新方法
  • 研究黑洞和中子星的合并
  • 在极端条件下检验广义相对论
  • 探索早期宇宙
  • 独立测量哈勃常数

专利:

NA

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Related to: gravitational waves, general relativity, LIGO, spacetime, black hole merger, neutron star, astronomy, interferometer.

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