PlumX Metrics
Embed PlumX Metrics

Improved All-Carbon Spintronic Device Design

Scientific Reports, ISSN: 2045-2322, Vol: 5, Issue: 1, Page: 7634
2015
  • 51
    Citations
  • 0
    Usage
  • 52
    Captures
  • 1
    Mentions
  • 0
    Social Media
Metric Options:   Counts1 Year3 Year

Metrics Details

Most Recent News

Low-carbon computing is needed to avoid a technological collapse

wk1003mike / shutterstockHuman society has come to rely on superior gadgets being produced every year. Each year, new phones or laptops are faster, sleeker and have even more capabilities. However, electronics are rarely recycled, and the carbon footprint of the internet already exceeds that of air travel. The internet also relies on “rare earths” and heavy and noble metals, leading to pollution a

Article Description

The discovery of magnetism in carbon structures containing zigzag edges has stimulated new directions in the development and design of spintronic devices. However, many of the proposed structures are designed without incorporating a key phenomenon known as topological frustration, which leads to localized non-bonding states (free radicals), increasing chemical reactivity and instability. By applying graph theory, we demonstrate that topological frustrations can be avoided while simultaneously preserving spin ordering, thus providing alternative spintronic designs. Using tight-binding calculations, we show that all original functionality is not only maintained but also enhanced, resulting in the theoretically highest performing devices in the literature today. Furthermore, it is shown that eliminating armchair regions between zigzag edges significantly improves spintronic properties such as magnetic coupling.

Bibliographic Details

Bullard, Zachary; Girão, Eduardo Costa; Owens, Jonathan R; Shelton, William A; Meunier, Vincent

Springer Science and Business Media LLC

Multidisciplinary

Provide Feedback

Have ideas for a new metric? Would you like to see something else here?Let us know