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相关概念视频

Detection of Black Holes01:10

Detection of Black Holes

Although black holes were theoretically postulated in the 1920s, they remained outside the domain of observational astronomy until the 1970s.
Their closest cousins are neutron stars, which are composed almost entirely of neutrons packed against each other, making them extremely dense. A neutron star has the same mass as the Sun but its diameter is only a few kilometers. Therefore, the escape velocity from their surface is close to the speed of light.
Not until the 1960s, when the first neutron...
Space-Time Curvature and the General Theory of Relativity01:17

Space-Time Curvature and the General Theory of Relativity

In 1905, Albert Einstein published his special theory of relativity. According to this theory, no matter in the universe can attain a speed greater than the speed of light in a vacuum, which thus serves as the speed limit of the universe.
This has been verified in many experiments. However, space and time are no longer absolute. Two observers moving relative to one another do not agree on the length of objects or the passage of time. The mechanics of objects based on Newton's laws of motion,...
Gravitation Between Spherically Symmetric Masses01:14

Gravitation Between Spherically Symmetric Masses

The gravitational potential energy between two spherically symmetric bodies can be calculated from the masses and the distance between the bodies, assuming that the center of mass is concentrated at the respective centers of the bodies.
Gravity between Spherical Bodies01:27

Gravity between Spherical Bodies

Newton's law of gravitation describes the gravitational force between any two point masses. However, for extended spherical objects like the Earth, the Moon, and other planets, the law holds with an assumption that masses of spherical objects are concentrated at their respective centers.
This assumption can be proved easily by showing that the expression for gravitational potential energy between a hollow sphere of mass (M) and a point mass (m) is the same as it would be for a pair of extended...
Schwarzschild Radius and Event Horizon01:21

Schwarzschild Radius and Event Horizon

No object with a finite mass can travel faster than the speed of light in a vacuum. This fact has an interesting consequence in the domain of extremely high gravitational fields.
The minimum speed required to launch a projectile from the surface of an object to which it is gravitationally bound so that it eventually escapes the object’s gravitational field is called the escape velocity. The escape velocity is independent of the mass of the object. Merging the idea of escape velocity with the...
Newton's Law of Gravitation01:15

Newton's Law of Gravitation

Our everyday observation tells us that all objects close to the Earth naturally tend to fall to the ground. Early philosophers assumed that this downward force was unique to Earth. By the 16th century, Nicolaus Copernicus (1473-1543) put forward the heliocentric theory, which suggested that Earth and other planets orbited the sun, while the Moon orbited the Earth. However, it was Isaac Newton (1642-1727) who linked these two motions together in the 17th century. He reasoned that the force of...

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相关实验视频

Updated: Jul 12, 2026

The Generation of Higher-order Laguerre-Gauss Optical Beams for High-precision Interferometry
12:14

The Generation of Higher-order Laguerre-Gauss Optical Beams for High-precision Interferometry

Published on: August 12, 2013

使用引力透镜测试宇宙学模型的测试.

J Wambsganss, R Cen, J P Ostriker

    Science (New York, N.Y.)
    |April 14, 1995
    PubMed
    概括

    引力透镜通过检测质量变化来测试宇宙模型. 模拟显示标准冷暗物质 (CDM) 模型预测了太多广泛分裂的类星体图像,与观测相矛盾.

    科学领域:

    • 宇宙学的宇宙学是什么?
    • 天体物理学 天体物理学
    • 计算模拟的计算模拟.

    背景情况:

    • 引力透镜对质量不均质很敏感,这使得它成为宇宙学模型的关键测试.
    • 标准冷暗物质 (CDM) 模型是领先的宇宙学框架.

    研究的目的:

    • 通过使用详细的重力透镜模拟,严格测试标准CDM模型.
    • 评估CDM模型与量子星图像分裂的观测数据的一致性.

    主要方法:

    • 光线通过模拟宇宙的数值传播与CDM衍生的不均性.
    • 使用大规模,完全非线性计算机模拟来模拟光曲.

    主要成果:

    • 标准CDM模型预测广泛分裂的类星体图像的频率比观察到的要高.
    • 在CDM预测和强引力透镜数据之间发现了不一致.

    结论:

    • 通过强大的引力透镜测试,COBE规范化的CDM模型 (Omega=1,H(o) =50) 被排除在外.
    • 可能需要对CDM模型进行细化,以使其与透镜观测相协调.

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    相关实验视频

    Last Updated: Jul 12, 2026

    The Generation of Higher-order Laguerre-Gauss Optical Beams for High-precision Interferometry
    12:14

    The Generation of Higher-order Laguerre-Gauss Optical Beams for High-precision Interferometry

    Published on: August 12, 2013

    Setting Limits on Supersymmetry Using Simplified Models
    07:46

    Setting Limits on Supersymmetry Using Simplified Models

    Published on: November 15, 2013

    Simulating the Mechanics of Lens Accommodation via a Manual Lens Stretcher
    05:14

    Simulating the Mechanics of Lens Accommodation via a Manual Lens Stretcher

    Published on: February 23, 2018