色色啦

News

Researchers observe new charge transport phenomenon

No fully corresponding phenomenon has been found in modern physics before.
Charge transport

Researchers of Aalto and the German University of Marburg have collaborated in the study of the movement of charges over interfaces of semiconductor materials. The group noticed a new kind of transport phenomenon for charges. In the phenomenon, a pair formed by a negative electron and a positive charge moves onto an interface, after which its 'message' is passed on to the other side of the interface, where it is carried on by a similar pair. The new theoretical result opens up interesting prospects for carrying out logical operations in electronics.

- In addition to microelectronics, transport phenomena of charges are in a key role in many biological processes, such as photosynthesis, explains Professor Ilkka Tittonen from Aalto University.

A very unique observation

In the tunnelling phenomenon a particle can, with certain likelihood, penetrate the thin interface between materials, even if it would be seen as impossible according to classical physics. The newly discovered phenomenon is not based on the tunnelling of individual charges, but rather on the dynamics of a pair made of an electron and a positive charge that is connected to it electrically. This bound pair composed of an electron and a positively charged hole is called an exciton.

- The observation is quite unique. Finally, an optical pulse functioning on a terahertz frequency brings information or the so-called correlation of the electron hole pair from one side of the interface to the other, without any tunnelling of the exciton itself. No phenomenon that would be fully equivalent to this has been found previously in the field of modern physics, Tittonen explains.

The phenomenon combines semiconductor and terahertz techniques and it allows a new kind of logical operation in microelectronics. The group believes that it will be possible, on the basis of the phenomenon, to design new kinds of processors which function partly through optics and partly through electricity.

The group published its observations in the publication Physical Review Letters on 16 March 2015.

The study took place at Aalto University School of Electrical Engineering in Finland, primarily by Osmo V盲nsk盲, under the supervision of Professor Ilkka Tittonen and Professors Mackillo Kira and Stephan Koch.  Finnish funding for the study has come from Aalto University and the Academy of Finland. Professor Mackillo Kira serves as a visiting professor at Aalto University regularly every year.

Further information:
Professor Ilkka Tittonen
ilkka.tittonen@aalto.fi
+358 40 5437 564

  • Updated:
  • Published:
Share
URL copied!

Read more news

Samu Taulu
Appointments, Research & Art Published:

Samu Taulu develops next-generation brain imaging methods

Associate Professor of neurostimulation and neuroimaging Samu Taulu develops more precise methods for understanding the brain
Winners on stage for the EAA best student paper award
Awards and Recognition, Research & Art Published:

EAA Best Paper and Presentation Award for Young Researchers for postdoctoral researcher Thomas Deppisch

The awarded work shows how speech can be made clearer in noisy environments while still preserving directional cues
Curly-haired woman speaks into a microphone indoors, standing next to a screen.
Research & Art Published:

Professor Hanna Maylett: 鈥淲ithout time spent together, a shared vision cannot emerge鈥

According to Hanna Maylett, associate professor of film directing, a director doesn鈥檛 need to know all the answers; rather, their role is to create a process through which those answers can be discovered together.
Alex and Lucie Lampen
Cooperation, Research & Art Published:

From humble beginnings to a captain of industry 鈥 a visionary鈥檚 final gift lives on at Aalto University

The Lamp茅n bequest supports Aalto University chemical engineering students and future professionals through scholarships. Honorary counsellor and Master of Science (Technology) in chemical engineering Aleksander Lamp茅n was a significant pioneer in the Finnish wood processing and cellulose industries. His legacy continues to promote internationalisation and high-quality research in the field of bioproduct technology. A donation 色色啦 University is an impactful investment in education, innovation and the renewal of society.