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相关概念视频

X-ray Crystallography02:18

X-ray Crystallography

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The size of the unit cell and the arrangement of atoms in a crystal may be determined from measurements of the diffraction of X-rays by the crystal, termed X-ray crystallography.
Diffraction
Diffraction is the change in the direction of travel experienced by an electromagnetic wave when it encounters a physical barrier whose dimensions are comparable to those of the wavelength of the light. X-rays are electromagnetic radiation with wavelengths about as long as the distance between neighboring...
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X-ray Diffraction of Biological Samples01:10

X-ray Diffraction of Biological Samples

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X-ray diffraction or XRD is an analytical tool that utilizes X-rays to study ordered structures such as crystalline organic and inorganic samples, polycrystalline materials, proteins, carbohydrates, and drugs.
According to Bragg's law, when X-rays strike the sample positioned on a stage, the rays are  scattered by the electron clouds around the sample atoms. The  X-ray diffraction or scattering is caused by constructive interference of the X-ray waves that reflect off the internal...
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Potential Due to a Polarized Object01:29

Potential Due to a Polarized Object

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A neutral atom consists of a positively charged nucleus surrounded by a negatively charged electron cloud. When placed in an external electric field, the external electric force pulls the electrons and nucleus apart, opposite to the intrinsic attraction between the nucleus and the electrons. The opposing forces balance each other with a slight shift between the center of masses of the nucleus and the electron cloud, resulting in a polarized atom. On the other hand, a few molecules, like water,...
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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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Measurements of Long-range Electronic Correlations During Femtosecond Diffraction Experiments Performed on Nanocrystals of Buckminsterfullerene
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穿着尖端:如何抛向尖端衍射理论解决了灾难光学中的一个基本问题.

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    科学领域:

    • 经典光学是古典的光学.
    • 理论光学 理论光学
    • 数学物理 数学物理

    背景情况:

    • 灾难光学为描述光衍射提供了一个新的框架.
    • 描述光学奇点 (声学) 的挑战阻碍了实际应用.
    • 以前的解决方案仅限于最简单的腐蚀物,折叠.

    研究的目的:

    • 为了解决在灾难光学中穿戴尖端腐蚀的基本问题.
    • 为了扩展折叠奇点之外的衍射模式的描述.
    • 展示一个实用和有效的方法来实现这个解决方案.

    主要方法:

    • 利用一个古老的数学定理来解决尖端奇点.
    • 采用了边界衍射波理论的对轴性版本.
    • 集成的灾难光学与边界衍射波理论.

    主要成果:

    • 达到了一个完整的解决方案,以解决 cusp caustic 的连接问题.
    • 证明了开发的算法的有效性和易于实施.
    • 提供了一个显著的例子,展示了算法的功能.

    结论:

    • 这项研究成功地解决了灾难光学中长期存在的理论挑战.
    • 这一进步促进了对光衍射现象的更全面的理解.
    • 提出的方法为光学研究和应用提供了一个实际的工具.