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相关概念视频

Subatomic Particles03:37

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Dalton was only partially correct about the particles that make up matter. All matter is composed of atoms, and atoms are composed of three smaller subatomic particles: protons, neutrons, and electrons. These three particles account for the mass and the charge of an atom.
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Following the work of Ernest Rutherford and his colleagues in the early twentieth century, the picture of atoms consisting of tiny dense nuclei surrounded by lighter and even tinier electrons continually moving about the nucleus was well established. This picture was called the planetary model since it pictured the atom as a miniature “solar system” with the electrons orbiting the nucleus like planets orbiting the sun. The simplest atom is hydrogen, consisting of a single proton as...
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Thomson's e/m Experiment01:19

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In a beam of charged particles created by a heated cathode, the particles move at different speeds. However, many applications need a beam with uniform particle speeds. An arrangement known as a velocity selector uses electric and magnetic fields to pick particles with a particular speed from the beam.
A particle with charge q, speed v, and mass m enters an area from the top, where the magnetic and electric fields are perpendicular both to the particle's motion and to one another. The magnetic...
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The Atomic Theory of Matter02:59

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The earliest recorded discussion of the basic structure of matter comes from ancient Greek philosophers. Leucippus and Democritus argued that all matter was composed of small, finite particles that they called atomos, meaning “indivisible.” Later, Aristotle and others came to the conclusion that matter consisted of various combinations of the four “elements” — fire, earth, air, and water — and could be infinitely divided. Interestingly, these philosophers...
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Electron Behavior01:09

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Electrons are negatively charged subatomic particles attracted to and orbit around the positively-charged nucleus of an atom. They reside in spaces associated with energy levels called shells and are further organized into subshells and orbitals within each shell.
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Overview
Electrons are negatively charged subatomic particles that are attracted to an orbit around the positively-charged nucleus of an atom. They reside in locations that are associated with energy levels called shells and are further organized into sub-shells and orbitals within each shell.
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Quantification of Hydrogen Concentrations in Surface and Interface Layers and Bulk Materials through Depth Profiling with Nuclear Reaction Analysis
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原子香港-奥曼德尔实验

R Lopes1, A Imanaliev1, A Aspect1

  • 1Laboratoire Charles Fabry, Institut d'Optique Graduate School - CNRS - Université Paris Sud, 2 avenue Augustin Fresnel, 91127 Palaiseau, France.

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此摘要是机器生成的。

研究人员使用Hong,Ou和Mandel实验证明了两原子的干扰. 这种量子力学现象表明原子表现得像波一样,为量子研究开辟了新的途径.

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科学领域:

  • 量子力学就是量子力学.
  • 原子物理 原子物理
  • 量子光学是一种量子光学.

背景情况:

  • 两粒子干扰是一种复杂的量子现象,比单粒子波粒子二元性更不直观.
  • 纠是两个粒子干扰和量子力学测试的核心,比如贝尔不等式.
  • 洪,乌和曼德尔的实验简化了对两光子干扰的研究,揭示了非经典的行为.

研究的目的:

  • 为了实现洪,乌和曼德尔的实验,使用原子而不是光子.
  • 研究两原子干扰及其对量子力学的影响.
  • 探索测试量子理论和开发量子技术的新方法.

主要方法:

  • 开发了一种可发射双原子的源.
  • 从每对中指导一个原子进入光束分割器的每个输入通道.
  • 确保空间重叠和原子不可区分的输入.

主要成果:

  • 观察到当原子在空间上重叠时,它们总是在一个输出通道中一起出现.
  • 证明了两原子的干扰,这种现象不可能用经典方法解释.
  • 使用大质量粒子 (原子) 实现了量子光学实验.

结论:

  • 这项工作使得测试贝尔不等式的原子力学可观测物,如动量,成为可能.
  • 它为研究从量子到经典的过渡提供了一个新的平台.
  • 为量子信息和模拟提供了一种用于对非经典原子源进行基准测试的新方法.