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相关概念视频

Insensitive Nuclei Enhanced by Polarization Transfer (INEPT)01:15

Insensitive Nuclei Enhanced by Polarization Transfer (INEPT)

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Insensitive Nuclei Enhanced by Polarization Transfer (INEPT) is an advanced Nuclear Magnetic Resonance (NMR) technique specifically designed to detect and enhance the signals of low-abundance nuclei, such as carbon-13 and nitrogen-15, in small molecules. The fundamental principle behind INEPT is the transfer of polarization from a more abundant and highly polarizable nucleus, typically hydrogen-1, to the low-abundance nucleus of interest. This process effectively boosts the NMR signal of the...
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Dielectric Polarization in a Capacitor01:31

Dielectric Polarization in a Capacitor

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The presence of a dielectric medium in a capacitor not only changes the voltage and capacitance but also affects the electric field. In general, dielectrics can be of two types: polar and nonpolar. In a polar dielectric, the positive and negative charges in the molecules are separated by a distance and hence have a permanent dipole moment. In contrast, no such charge separation exists in a nonpolar dielectric, however the nonpolar molecules get polarized in the presence of an external electric...
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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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Phase Contrast and Differential Interference Contrast Microscopy01:26

Phase Contrast and Differential Interference Contrast Microscopy

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Phase-Contrast Microscopes
In-phase-contrast microscopes, interference between light directly passing through a cell and light refracted by cellular components is used to create high-contrast, high-resolution images without staining. It is the oldest and simplest type of microscope that creates an image by altering the wavelengths of light rays passing through the specimen. Altered wavelength paths are created using an annular stop in the condenser. The annular stop produces a hollow cone of...
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相关实验视频

Updated: Sep 11, 2025

Demonstration of Equal-Intensity Beam Generation by Dielectric Metasurfaces
09:33

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动态重新配置的2D偏振-无意识的图像边缘检测使用非挥发性相变元表面.

Stuart Kendall, Carlota Ruiz de Galarreta, Joe Shields

    Optics express
    |August 13, 2025
    PubMed
    概括

    新的可重新配置的非本地元表面使光学模拟计算成为可能. 这些设备使用化物相变材料,在边缘检测和明亮场成像等成像模式之间切换.

    科学领域:

    • 光子学和光学工程. 光子学和光学工程.
    • 材料科学,专注于基化物相变材料.
    • 计算成像和模拟计算.

    背景情况:

    • 光学模拟计算提供低能耗,高速的成像解决方案.
    • 非局部元表面可以高效地执行模拟图像处理.
    • 当前的元表面在制造后具有固定的功能.

    研究的目的:

    • 为多功能光学模拟计算开发可重新配置的非本地元表面.
    • 用一个单一的设备来演示不同成像模式之间的切换.
    • 探索新材料对于动态光学功能的潜力.

    主要方法:

    • 使用低损失的素化物相变材料 (Sb2Se3) 制造非局部元表面.
    • 调查地表特征的重构性.
    • 在2D边缘检测,明亮场成像和图像模糊模式之间切换的演示.

    主要成果:

    • 通过低损耗的素化物材料实现了可重新配置的非局部元表面.
    • 成功演示了边缘检测和明亮场成像模式之间的切换.
    • 展示了在边缘检测和图像模糊模式之间切换的能力.

    结论:

    更多相关视频

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    • 可重新配置的非局部元表面为光束操纵提供动态控制.
    • 炭化物相变材料使紧型设备中的多功能成像功能成为可能.
    • 这项工作为可适应的光学模拟计算和下一代成像系统铺平了道路.