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Sound Waves: Resonance01:14

Sound Waves: Resonance

2.5K
Resonance is produced depending on the boundary conditions imposed on a wave. Resonance can be produced in a string under tension with symmetrical boundary conditions (i.e., has a node at each end). A node is defined as a fixed point where the string does not move. The symmetrical boundary conditions result in some frequencies resonating and producing standing waves, while other frequencies interfere destructively. Sound waves can resonate in a hollow tube, and the frequencies of the sound...
2.5K
Parallel Resonance01:23

Parallel Resonance

187
The parallel RLC circuit is an arrangement where the resistor (R), inductor (L), and capacitor (C) are all connected to the same nodes and, as a result, share the same voltage across them. The parallel RLC circuit is analyzed in terms of admittance (Y), which reflects the ease with which current can flow. The admittance is given by:
187
Characteristics of Series Resonant Circuit01:24

Characteristics of Series Resonant Circuit

226
Series resonance occurs in a circuit containing inductive (L), capacitive (C), and resistive (R) elements connected sequentially. At the resonance frequency, the inductive and capacitive reactances are equal in magnitude but opposite in sign, effectively canceling each other. This causes the circuit's impedance is minimal, primarily determined by the resistance R. The resonant frequency of an RLC circuit is defined as:
226
Resonance in an AC Circuit01:26

Resonance in an AC Circuit

2.0K
The property of an inductor makes it resist any change in the current passing through it, while the property of a capacitor is to build up the charge across its terminals. Hence, if an inductor and capacitor are connected in series, they have opposite effects on the relative phase between current and voltage. The current through the circuit undergoes forced oscillation at the frequency of the source. The resistance term in an R-L-C circuit acts as a damping term because power is dissipated...
2.0K
Standing Waves in a Cavity01:28

Standing Waves in a Cavity

871
A household microwave and lasers are examples of standing electromagnetic waves in a cavity. When two conducting metal plates are placed parallel at the nodal planes, it creates a cavity where standing waves are formed. The cavity between the two planes is analogous to a stretched string held at the points x = 0 and x = L. Here, the distance 'L' between the two planes must be an integer multiple of half of the wavelength. The wavelengths that satisfy this condition are given by:
871
Double Resonance Techniques: Overview01:12

Double Resonance Techniques: Overview

191
Double resonance techniques in Nuclear Magnetic Resonance (NMR) spectroscopy involve the simultaneous application of two different frequencies or radiofrequency pulses to manipulate and observe two distinct nuclear spins. One important application of double resonance is spin decoupling, which selectively suppresses coupling with one type of nucleus while observing the NMR signal from another nucleus, simplifying the spectrum and enhancing resolution.
Spin decoupling is usually achieved by...
191

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相关实验视频

Updated: Jun 7, 2025

Microwave Photonics Systems Based on Whispering-gallery-mode Resonators
12:18

Microwave Photonics Systems Based on Whispering-gallery-mode Resonators

Published on: August 5, 2013

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开放的低语画廊模式共振器共振器

D R Kazanov, A M Monakhov

    Optics letters
    |November 15, 2024
    PubMed
    概括
    此摘要是机器生成的。

    开放式低语画廊模式 (WGM) 共振器克服了传统WGM设备中的光提取和模式密度问题. 这一创新使得用于先进的光子应用的定向辐射和稀疏光谱成为可能.

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    Development of Whispering Gallery Mode Polymeric Micro-optical Electric Field Sensors
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    相关实验视频

    Last Updated: Jun 7, 2025

    Microwave Photonics Systems Based on Whispering-gallery-mode Resonators
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    Microwave Photonics Systems Based on Whispering-gallery-mode Resonators

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    Stimulated Stokes and Antistokes Raman Scattering in Microspherical Whispering Gallery Mode Resonators
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    科学领域:

    • 光子学是指光子学的使用方法.
    • 光学工程是指光学工程.
    • 响应器物理 响应器物理

    背景情况:

    • 传统的低语画廊模式 (WGM) 共振器因光线提取不良和密集模式光谱而受到影响.
    • 这些局限性阻碍了它们在先进的光子设备中的应用.

    研究的目的:

    • 提出和研究开放式WGM (OWGM) 共振器,以解决传统WGM共振器的局限性.
    • 为了证明降低模式密度和增强光取能力.

    主要方法:

    • 具有孔的二维金属和介电磁盘共振器的数值模拟.
    • 对3D介电OWGM共振器的扩展.
    • 设计一个圆柱形的布拉格微共振器与优化的光纤连接器.

    主要成果:

    • OWGM共振器显著增加了模式间距离,减少了模式密度.
    • 3D介电OWGM共振器具有适合光子应用的稀疏光谱.
    • 布拉格微共振器设计实现了近单元传输和高效合到单模光纤.

    结论:

    • OWGM共振器有效地解决了传统WGM共振器的局限性.
    • 拟议的设计为光子设备,激光技术和光通信提供了进步.