Thursday, 1 August 2013

New fibre optic technology to boost internet bandwidth




Scientists have devised a new fibre optic technology that promises to increase internet bandwidth dramatically.

In a breakthrough, scientists -- including one of Indian origin -- have devised a new fibre optic technology that promises to increase bandwidth dramatically, easing internet congestion and video streaming.

The technology centers on donut-shaped laser light beams called optical vortices, in which the light twists like a tornado as it moves along the beam path, rather than in a straight line.

Widely studied in molecular biology, atomic physics and quantum optics, optical vortices (also known as orbital angular momentum, or OAM, beams) were thought to be unstable in fibre, until Boston University engineering professor Siddharth Ramachandran recently designed an optical fibre that can propagate them.

In a paper in journal Science, he and Alan Willner of University of Southern California, demonstrated the stability of the beams in optical fibre and also their potential to boost internet bandwidth.

"For several decades since optical fibres were deployed, the conventional assumption has been that OAM-carrying beams are inherently unstable in fibres," said Ramachandran.

"Our discovery, of design classes in which they are stable, has profound implications for a variety of scientific and technological fields that have exploited the unique properties of OAM-carrying light, including the use of such beams for enhancing data capacity in fibres," he said.

Ramachandran and Willner collaborated with OFS-Fitel, a fibre optics company in Denmark, and Tel Aviv University.

Traditionally, bandwidth has been enhanced by increasing the number of colours, or wavelengths of data-carrying laser signals -- essentially streams of 1s and 0s -- sent down an optical fibre, where the signals are processed according to colour.

An emerging strategy to boost bandwidth is to send the light through a fibre along distinctive paths, or modes, each carrying a cache of data from one end of the fibre to the other.

Unlike the colours, however, data streams of 1s and 0s from different modes mix together; determining which data stream came from which source requires computationally intensive and energy-hungry digital signal processing algorithms.

Ramachandran and Willner's approach combines both strategies, packing several colours into each mode, and using multiple modes.

In experiments in the study, researchers created an OAM fibre with four modes (an optical fibre typically has two), and showed that for each OAM mode, they could send data through a 1km fibre in 10 different colours, resulting in a transmission capacity of 1.6 terabits per second.  

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Soon,flexible batteries for your gadgets


Soon, flexible batteries for your gadgets 
Researchers are working on flexible batteries.
 
TV screen that hangs on the wall like a poster or smartphone that can fold up and fit into a pocket are closer to reality because of advances towards development of flexible batteries that could power a new genre of electronics devices.

Those polymer, or plastic, batteries are the topic of the cover story in the current edition of Chemical and Engineering News (C and EN), the weekly news magazine of the American Chemical Society, and the world's largest scientific society.

Mitch Jacoby, C and EN senior correspondent, focuses on the latest research that involves organic polymers, which exhibit key properties that are needed for the next generation of batteries.

Those batteries will not just be flexible, but powerful, lightweight and made from inherently safe materials and their uses will extend beyond consumer electronics to include electric vehicles and other transportation applications.

The article published in the Newsmagazine explains that lithium-ion technology likely will continue to be the mainstay, but flammable, liquid electrolytes need a safety upgrade.

Scientists are searching for nonflammable, solid electrolytes to restore lithium batteries' reputation after the recent Boeing 787 Dreamliner safety incidents and other fire-related concerns.

The article indicates they are confident that the obstacles to making flex batteries a reality can be overcome. 
 
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