Researchers extend Einstein's work

December 20, 2005 Albert Einstein

A University of Queensland research team has celebrated the end of the Einstein International Year of Physics by developing a ground-breaking theory based on work originated by the great scientist.

The theory was developed by physicists Dr Karen Kheruntsyan, Dr Murray Olsen and Professor Peter Drummond at the UQ node of the Australian Research Council Centre of Excellence for Quantum-Atom Optics (ACQAO).

Dr Kheruntsyan said the world-first theory combined two of Einstein's many outstanding contributions to science – the Einstein-Podolsky-Rosen (EPR) paradox and Bose-Einstein condensation.

“The original EPR work was undertaken by Albert Einstein in the 1930s and questioned the basis of what is today known as quantum mechanics,” Dr Kheruntsyan said.

“Einstein was never happy with certain aspects of quantum mechanics and the EPR paradox has been one of the most puzzling physics problems for the past 80 years. The essence of the paradox is that it suggested that classical concepts of physical reality were not applicable in the quantum domain.

“The new work represents a break-through in this area of theoretical science and could have major applications in many areas, particularly new gravity sensors.”

Dr Kheruntsyan said the theory extended pioneering work carried out by Reid and Drummond in the late 1980s, which demonstrated how to perform the famous EPR thought experiments using photons (light).

“The new technology of Bose-Einstein condensates and atom lasers available today has enabled us to extend this work even further and we have now been able to propose a demonstration of the EPR paradox using ultra-cold atoms.

“Unlike the earlier work with photons, atoms feel the force of gravity and these new techniques will open up a whole new field for testing quantum mechanics in future,” Dr Kheruntsyan said.

A paper on the new theory “Einstein-Podolsky-Rosen correlations via dissociation of a molecular Bose-Einstein condensate” was published in the October issue of the world's most prestigious journal, the Physics Review Letters.

ACQAO undertakes research which is carried out at three Australian universities: The University of Queensland, the Australian National University and Swinburne University of Technology.

See also: http://www.physorg.com/news139.html

Source: University of Queensland


   
Rate this story - 3.7 /5 (18 votes)


December 20, 2005 all stories

Comments: 0

3.7 /5 (18 votes)

  • hide
  • Related Stories

  • Nobel Prize-Winner Confirms UQ Quantum Physics Theory
    created Jun 02, 2004 | popularity not rated yet | comments 0


Other News

High-performance microring resonator developed by INRS researchers

Physics / Optics & Photonics

created 1minute ago | popularity not rated yet | comments 0

A new, more efficient low-cost microring resonator for high speed telecommunications systems has been developed and tested by Professor Roberto Morandotti's INRS team in collaboration with Canadian, American, and Australian ...


Extra large carbon

Extra large carbon

Physics / General Physics

created 1hour ago | popularity 5 / 5 (3) | comments 0 | with audio podcast

An exotic form of carbon has been found to have an extra large nucleus, dwarfing even the nuclei of much heavier elements like copper and zinc, in experiments performed in a particle accelerator in Japan. ...


Leaf veins inspire a new model for distribution networks (w/ Video)

Physics / General Physics

created 4 hours ago | popularity 5 / 5 (1) | comments 0 | with audio podcast

(PhysOrg.com) -- Following the straight and narrow may be good moral advice, but it’s not a great design principle for a distribution network. In new research, a team of biophysicists describe a complex netting of interconnected ...


Scientist explore future of high-energy physics

Scientist explore future of high-energy physics

Physics / General Physics

created 7 hours ago | popularity 4.9 / 5 (10) | comments 4 | with audio podcast

In a 1954 speech to the American Physical Society, the University of Chicago's Enrico Fermi fancifully envisioned a particle accelerator that encircled the globe. Such would be the ultimate theoretical outcome, ...


New magnetic tuning method enhances data storage

New magnetic tuning method enhances data storage

Physics / General Physics

created 8 hours ago | popularity 4.3 / 5 (3) | comments 0 | with audio podcast

Researchers in Chicago and London have developed a method for controlling the properties of magnets that could be used to improve the storage capacity of next-generation computer hard drives.