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相关概念视频

The Wave Nature of Light02:12

The Wave Nature of Light

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The nature of light has been a subject of inquiry since antiquity. In the seventeenth century, Isaac Newton performed experiments with lenses and prisms and was able to demonstrate that white light consists of the individual colors of the rainbow combined together. Newton explained his optics findings in terms of a "corpuscular" view of light, in which light was composed of streams of extremely tiny particles traveling at high speeds according to Newton's laws of motion.
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Photoelectric Effect02:26

Photoelectric Effect

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When light of a particular wavelength strikes a metal surface, electrons are emitted. This is called the photoelectric effect. The minimum frequency of light that can cause such emission of electrons is called the threshold frequency, which is specific to the metal. Light with a frequency lower than the threshold frequency, even if it is of high intensity, cannot initiate the emission of electrons. However, when the frequency is higher than the threshold value, the number of electrons ejected...
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The de Broglie Wavelength02:32

The de Broglie Wavelength

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In the macroscopic world, objects that are large enough to be seen by the naked eye follow the rules of classical physics. A billiard ball moving on a table will behave like a particle; it will continue traveling in a straight line unless it collides with another ball, or it is acted on by some other force, such as friction. The ball has a well-defined position and velocity or well-defined momentum, p = mv, which is defined by mass m and velocity v at any given moment. This is the typical...
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Atomic Nuclei: Nuclear Relaxation Processes01:23

Atomic Nuclei: Nuclear Relaxation Processes

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In the absence of an external magnetic field, nuclear spin states are degenerate and randomly oriented. When a magnetic field is applied, the spins begin to precess and orient themselves along (lower energy) or against (higher energy) the direction of the field. At equilibrium, a slight excess population of spins exists in the lower energy state. Because the direction of the magnetic field is fixed as the z-axis,  the precessing magnetic moments are randomly oriented around the z-axis.
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Molecular Spectroscopy: Absorption and Emission01:14

Molecular Spectroscopy: Absorption and Emission

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Molecules possess discrete energy levels called quantum states. Unlike atoms, which have simpler energy levels, molecules possess additional rotational and vibrational energy levels. Each energy level is separated by an energy gap, with the gaps between adjacent electronic, vibrational, and rotational levels varying significantly. The three types of energy levels in a diatomic molecule are shown in Figure 1.
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Electromagnetic Waves in Matter01:30

Electromagnetic Waves in Matter

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Electromagnetic waves can travel in the vacuum as well as in matter. For example light, which is an electromagnetic wave, can travel through air, water, or glass.
Consider the electromagnetic wave passing through a dielectric medium. In such a case, Maxwell's equations get modified. In Ampere's law, ε0 , the dielectric permittivity of free space is replaced with ε, the permittivity of dielectric. Also, the vacuum permeability μ0 is replaced by the permeability of the medium,...
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Quantum State Engineering of Light with Continuous-wave Optical Parametric Oscillators
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在量子非线性介质中的吸引光子.

Ofer Firstenberg1, Thibault Peyronel, Qi-Yu Liang

  • 1Department of Physics, Harvard University, Cambridge, Massachusetts 02138, USA.

Nature
|September 27, 2013
PubMed
概括

科学家们创造了一个量子非线性介质,其中光子像巨大的粒子一样相互作用. 这一突破使强烈的光子吸引力成为可能,从而导致量子技术和光学计算的新型应用.

科学领域:

  • 量子光学就是量子光学.
  • 原子物理 原子物理
  • 量子信息科学是一种量子信息科学.

背景情况:

  • 光子,光的无质量量子,通常不会相互相互作用.
  • 实现连贯的光子-光子相互作用对于先进的科学和工程应用至关重要.

研究的目的:

  • 展示一个量子非线性介质,使单个光子能够表现为大质量粒子.
  • 探索光子之间的强相互吸引力和两光子结合状态的形成.

主要方法:

  • 利用光的分散合来强烈相互作用的里德伯格原子.
  • 采用时间分辨率量子态断层扫描来分析两光子波函数动态.

主要成果:

  • 观测到的单个光子表现出强烈相互吸引的大质粒子的特征.
  • 证明条件相位移超过一个半径.
  • 生成极化纠的光子对.

结论:

  • 开发的量子非线性介质促进了受控的光子对光子相互作用.
  • 这种技术为全光学切换,光子量子逻辑和生成相相关的光状态开辟了道路.

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