. Medical and Hospital News .




TIME AND SPACE
Growth of disorder of electrons measured in dual temperature system
by Staff Writers
Espoo, Finland (SPX) Aug 19, 2013


The diagram of a measured sample. It includes two microscopic conductors (N and S); individual electrons can move between them. The electrons are controlled by an external voltage V_g, and the number of electrons in the conductor S can be read with the help of a single-electron transistor (SET). Here is an electron microscope image with the parts corresponding to the diagram coloured in.

Researchers at Aalto University and the University of Tokyo have succeeded for the first time in experimentally measuring a probability distribution for entropy production of electrons.

Entropy production means an increase in disorder when electrons are moved individually between two microscopic conductors of differing temperatures.

The researchers also showed that a connection prevails between two definitions of entropy that have been used. The result is significant for the design of future nanoelectronic devices. The study was published recently in the scientific journal Nature Physics.

Similar experiments have been conducted before, but this is the first time that researchers have used conductors at different temperatures to measure the entropy production of electrons.

'Entropy production is defined either by the time when the shift takes place or by the heat that moves from one conductor to another. In the study we measured electronic entropy production according to both definitions.

The change in entropy in an individual measurement is random: the distribution for production is acquired by repeating the process about 100,000 times, for instance. Both distributions follow the so-called fluctuation relation', says doctoral student Jonne Koski.

Fluctuation relations are relatively new discoveries of thermodynamics and statistical physics. When the probability to produce a certain amount of disorder of electrons, or entropy, is precisely known, the fluctuation relation is an equation, which gives a probability for the decrease in the amount of entropy.

Therefore, the degree of disorder of electrons can decline when the nanostructures are examined for short periods of time.

'Entropy production leads to overheating in the nanostructures, which is why it is important to get more information on their heat transmission properties', observes Professor Jukka Pekola.

.


Related Links
Aalto University
Understanding Time and Space






Comment on this article via your Facebook, Yahoo, AOL, Hotmail login.

Share this article via these popular social media networks
del.icio.usdel.icio.us DiggDigg RedditReddit GoogleGoogle




Memory Foam Mattress Review

Newsletters :: SpaceDaily Express :: SpaceWar Express :: TerraDaily Express :: Energy Daily
XML Feeds :: Space News :: Earth News :: War News :: Solar Energy News

Get Our Free Newsletters
Space - Defense - Environment - Energy - Solar - Nuclear

...





TIME AND SPACE
Quantum teleportation: Transfer of flying quantum bits at the touch of a button
Mainz, Germany (SPX) Aug 23, 2013
By means of the quantum-mechanical entanglement of spatially separated light fields, researchers in Tokyo and Mainz have managed to teleport photonic qubits with extreme reliability. This means that a decisive breakthrough has been achieved some 15 years after the first experiments in the field of optical teleportation. The success of the experiment conducted in Tokyo is attributable to the use ... read more


TIME AND SPACE
Raytheon provides public safety a bridge from land mobile radios to smartphones and tablets

Mutualink Unveils Google Glass for Public Safety

Russia convicts officials of 2012 floods negligence

Disaster-weary Philippines mops up after deadly floods

TIME AND SPACE
Satellite tracking of zebra migrations in Africa is conservation aid

'Spoofing' attack test takes over ship's GPS navigation at sea

Orbcomm Globaltrak Completes Shipment Of Fuel Monitoring Solution In Afghanistan

Lockheed Martin GPS III Satellite Prototype To Help Cape Canaveral Air Force Station Prep For Launch

TIME AND SPACE
Building better brain implants: The challenge of longevity

Researchers say human foot not unique, more like those of great apes

Archaeologists find evidence of separate Neanderthal cultures in Europe

Spread of prehistoric peoples in California tied to environment

TIME AND SPACE
Kenya jails Chinese ivory smuggler in landmark ruling

Ancient cycads found to be pre-adapted to grow in groves

Rising mountains, cooling oceans prompted spread of invasive species 450 million years ago

Forest-interior Birds May be Benefiting from Harvested Clearings

TIME AND SPACE
Scientists find another flu virus in Chinese chickens

Long-term study backs early HIV drugs for children

Cambodian boy dies from bird flu: WHO

Infectious diseases and climate change intersect with no simple answers

TIME AND SPACE
China's Bo show likely condoned by officials: analysts

Defiant Bo denies bribery charge as China trial opens

UW geographer devises a way for China to resolve its 'immigration' dilemma

Bo Xilai: rise and fall of a political star in China

TIME AND SPACE
Russia home to text message fraud "cottage industry"

Global gangs rake in $870 bn a year: UN official

Mexican generals freed after cartel charges dropped

Mexicans turn to social media to report on drug war

TIME AND SPACE
US probe highlights hiring of Chinese 'princelings'

China manufacturing rebounds in August: HSBC

Eurozone faces slow, tortuous recovery: Moody's report

Lies, damn lies, and China's economic statistics




The content herein, unless otherwise known to be public domain, are Copyright 1995-2012 - Space Media Network. AFP, UPI and IANS news wire stories are copyright Agence France-Presse, United Press International and Indo-Asia News Service. ESA Portal Reports are copyright European Space Agency. All NASA sourced material is public domain. Additional copyrights may apply in whole or part to other bona fide parties. Advertising does not imply endorsement,agreement or approval of any opinions, statements or information provided by Space Media Network on any Web page published or hosted by Space Media Network. Privacy Statement