Groove Resonant Cavity

A groove resonant cavity is an engineered electromagnetic enclosure whose internal grooves shape field distribution, resonance, and energy confinement. When an external signal excites the cavity near one of its natural frequencies, reflected waves interfere constructively to form a stable resonant mode; the groove geometry modifies the cavity’s effective electrical dimensions, impedance, coupling, and local field strength. In engineering, these structures support compact resonators, frequency-selective components, filters, and sensing systems across radio-frequency and microwave applications. Understanding how groove dimensions control resonance helps engineers tune device performance, manage electromagnetic losses, and design specialized high-frequency systems.

Groove Resonant Cavity - Related Videos

Research

JoVE Journal - Biology

A Microfluidic Device with Groove Patterns for Studying Cellular Behavior

0 Views •

Cited by 2 •

2007

We describe a protocol for the fabrication of microfluidic devices that can enable cell capture and culture. In this approach patterned microstructures such as grooves within microfluidic channels are used to create low shear stress regions within which cell can dock.

Education

JoVE Science Education - Clinical Skills

Nose, Sinuses, Oral Cavity and Pharynx Exam

0 Views •

2023

Source: Richard Glickman-Simon, MD, Assistant Professor, Department of Public Health and Community Medicine, Tufts University School of Medicine, MA This video provides an overview of sinus, nose, and throat examinations. The demonstration begins with a brief overview of the anatomy of the region. The upper third of the nose is bony, and the bottom two-thirds are cartilaginous. Air entering the nares passes through the nasal vestibules and into the narrow passageway between the nasal septum...

Method Development for Contactless Resonant Cavity Dielectric Spectroscopic Studies of Cellulosic Paper

0 Views •

2019

A protocol for the non-destructive analysis of the fiber content and relative age of paper.

Fabrication And Characterization Of Photonic Crystal Slow Light Waveguides And Cavities

0 Views •

Cited by 14 •

2012

Use of photonic crystal slow light waveguides and cavities has been widely adopted by the photonics community in many differing applications. Therefore fabrication and characterization of these devices are of great interest. This paper outlines our fabrication technique and two optical characterization methods, namely: interferometric (waveguides) and resonant scattering (cavities).

Resonance Fluorescence of an InGaAs Quantum Dot in a Planar Cavity Using Orthogonal Excitation and Detection

0 Views •

Cited by 5 •

2017

Resonant excitation of a single self-assembled quantum dot can be achieved using an excitation mode orthogonal to the fluorescence collection mode. We demonstrate a method using the waveguide and Fabry-Perot modes of a planar microcavity surrounding the quantum dots. The method allows complete freedom in the detection polarization.

View All Results

FAQs

Related Topics