Microwave Resonators

Microwave resonators are structures that confine electromagnetic energy at microwave frequencies, producing sharply defined resonances that support precise measurements and signal control. Their geometry, materials, and boundary conditions determine the allowed standing-wave modes, while coupling elements transfer energy into and out of the resonant field; losses govern the quality factor and bandwidth. In physics, microwave resonators are used to characterize dielectric and magnetic materials, measure changes in temperature or environment, and investigate electromagnetic phenomena. They also underpin frequency filters, oscillators, sensors, spectroscopy systems, and quantum devices, where stable resonance and low energy loss improve sensitivity and performance.

Microwave Resonators - Related Videos

Research

JoVE Journal - Engineering

Microwave Photonics Systems Based on Whispering-gallery-mode Resonators

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Cited by 35 •

2013

The customized techniques developed in our lab to build microwave photonics systems based on ultra-high Q whispering gallery mode resonators are presented. The protocols to obtain and characterize these resonators are detailed, and an explanation of some of their applications in microwave photonics is given.

How to Ignite an Atmospheric Pressure Microwave Plasma Torch without Any Additional Igniters

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Cited by 26 •

2015

This movie shows how an atmospheric plasma torch can be ignited by microwaves with no additional igniters and provides a stable and continuous plasma operation suitable for plenty of applications.

Fabrication and Characterization of Superconducting Resonators

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Cited by 3 •

2016

Superconducting microwave resonators are of interest for detection of light, quantum computing applications and materials characterization. This work presents a detailed procedure for fabrication and characterization of superconducting microwave resonator scattering parameters.

Research

JoVE Journal - Chemistry
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Non-equilibrium Microwave Plasma for Efficient High Temperature Chemistry

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Cited by 8 •

2017

This article describes a flowing microwave reactor that is used to drive efficient non-equilibrium chemistry for the application of conversion/activation of stable molecules such as CO2, N2 and CH4. The goal of the procedure described here is to measure the in situ gas temperature and gas conversion.

Recombination Dynamics in Thin-film Photovoltaic Materials via Time-resolved Microwave Conductivity

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Cited by 2 •

2017

A Time Resolved Microwave Conductivity technique for investigating direct and trap-mediated recombination dynamics and determining carrier mobilities of thin film semiconductors is presented here.

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