Microfabricated Surface Traps

Microfabricated surface traps are lithographically patterned devices that use electrodes integrated on a substrate to confine and manipulate charged particles, especially ions, near the substrate surface. By applying radio-frequency and static voltages to electrode arrays, the resulting electric fields create a stable three-dimensional potential above the chip while allowing transport, splitting, and merging of trapped ions. These compact structures support scalable quantum information processors, precision spectroscopy, mass spectrometry, and studies of ion-matter interactions.

Microfabricated Surface Traps - Related Videos

Research

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Experimental Methods for Trapping Ions Using Microfabricated Surface Ion Traps

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Cited by 19 •

2017

This paper presents a microfabrication methodology for surface ion traps, as well as a detailed experimental procedure for trapping ytterbium ions in a room-temperature environment.

Education

JoVE Science Education - Engineering

Microfabrication via Photolithography

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2023

The fabrication of BioMEM devices is often done using a microfabrication technique called photolithography. This widely used method utilizes light to transfer a pattern onto a silicon wafer, and provides the basis for the fabrication of many types of BioMEM devices. This video presents the photolithography technique, shows how the process is performed in the cleanroom, and introduces some applications of the process.

Social Traps

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2020

Social traps are negative situations where people get caught in a direction or relationship that later proves to be unpleasant, with no easy way to back out of or avoid. The concept was orignally introduced by John Platt who applied psychology to Garrett Hardin's "Tragedy of the Commons", where in New England herd owners could let their cattle graze in the common ground. This situation seems like a good idea, but an individual could have an advantage. If they owned more cows, the larger...

Study of Cell Migration in Microfabricated Channels

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Cited by 43 •

2014

A quantitative method to study spontaneous migration of cells in a one-dimensional confined microenvironment is described. This method takes advantage of microfabricated channels and can be used to study migration of large number of cells under different conditions in single experiments.

Microfabricated Platforms for Mechanically Dynamic Cell Culture

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Cited by 3 •

2010

In this protocol, we demonstrate the fabrication of a microactuator array of vertically displaced posts on which the technology is based, and how this base technology can be modified to conduct high-throughput mechanically dynamic cell culture in both two-dimensional and three-dimensional culture paradigms.

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