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相关概念视频

Generating Electromagnetic Radiations01:10

Generating Electromagnetic Radiations

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The German physicist Heinrich Hertz (1857–1894) was the first to generate and detect certain types of electromagnetic waves in the laboratory. Starting in 1887, he performed a series of experiments that confirmed the existence of electromagnetic waves and verified that they travel at the speed of light. Hertz used an alternating-current RLC (resistor-inductor-capacitor) circuit that resonated at a known frequency and connected it to a loop of wire. High voltages induced across the gap in...
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Transmission Electron Microscopy01:15

Transmission Electron Microscopy

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In 1931, physicist Ernst Ruska—building on the idea that magnetic fields can direct an electron beam just as lenses can direct a beam of light in an optical microscope—developed the first prototype of the electron microscope. This development led to the development of the field of electron microscopy. In the transmission electron microscope (TEM), electrons are produced by a hot tungsten element and accelerated by a potential difference in an electron gun, which gives them up to 400...
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相关实验视频

Updated: Jul 4, 2025

Fabrication of Nanopillar-Based Split Ring Resonators for Displacement Current Mediated Resonances in Terahertz Metamaterials
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Fabrication of Nanopillar-Based Split Ring Resonators for Displacement Current Mediated Resonances in Terahertz Metamaterials

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空心金属管用于高效的电子操纵,使用太赫兹表面波.

Xieqiu Yu, Yushan Zeng, Yafeng Bai

    Optics express
    |February 1, 2024
    PubMed
    概括

    这项研究通过将其与现有的电子枪集成来增强太赫兹驱动的电子操纵. 新方法显著改善了对紧的电子源的电子能量调制和脉冲压缩.

    科学领域:

    • 物理 物理学 物理
    • 工程 工程师 工程师 工程师
    • 材料科学 材料科学 材料科学

    背景情况:

    • 紧型电子源对物理学,医学和工业至关重要.
    • 太赫兹 (THz) 驱动的电子操纵显示了在介电线波导 (DLW) 中高梯度加速的前景.
    • 以前使用THz表面波的方法实现了高THz能量,但由于电子能量扩散很大而受到损害.

    研究的目的:

    • 为了适应THz表面波驱动的电子操纵,用于成熟的电子源,如直流和射频枪.
    • 为了克服大能量在激光诱导的电子脉冲中传播的局限性.
    • 开发一种更实用,更高效的THz驱动电子源.

    主要方法:

    • 提出了一个方案,将THz表面波概念扩展到商业电子枪.
    • 用一个简单的空心圆柱管进行电子传输.
    • 采用2.9mJ单周期太赫兹脉冲进行电子操纵.

    主要成果:

    • 实现了高达860keV的显著电子能量调制.
    • 证明了电子脉冲宽度的压缩到15 femtoseconds (fs).
    • 空洞管的设计可以促进系统的级联运行,以提高性能.

    更多相关视频

    Design, Fabrication, and Experimental Characterization of Plasmonic Photoconductive Terahertz Emitters
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    Design, Fabrication, and Experimental Characterization of Plasmonic Photoconductive Terahertz Emitters

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    Simulation, Fabrication and Characterization of THz Metamaterial Absorbers
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    Simulation, Fabrication and Characterization of THz Metamaterial Absorbers

    Published on: December 27, 2012

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    相关实验视频

    Last Updated: Jul 4, 2025

    Fabrication of Nanopillar-Based Split Ring Resonators for Displacement Current Mediated Resonances in Terahertz Metamaterials
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    Fabrication of Nanopillar-Based Split Ring Resonators for Displacement Current Mediated Resonances in Terahertz Metamaterials

    Published on: March 23, 2017

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    Design, Fabrication, and Experimental Characterization of Plasmonic Photoconductive Terahertz Emitters
    10:54

    Design, Fabrication, and Experimental Characterization of Plasmonic Photoconductive Terahertz Emitters

    Published on: July 8, 2013

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    Simulation, Fabrication and Characterization of THz Metamaterial Absorbers
    13:44

    Simulation, Fabrication and Characterization of THz Metamaterial Absorbers

    Published on: December 27, 2012

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    结论:

    • 拟议的方案有效调节电子能量,并使用成熟的电子源压缩脉冲宽度.
    • 空洞管设计为紧而高效的THz驱动电子源提供了实用途径.
    • 这一进步预计将对基础物理学,瘤学和先进的工业应用产生重大影响.