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Harvard University engineers demonstrate laser nanoantenna
Engineers and applied scientists from Harvard University have demonstrated a new photonic device with a wide range of potential commercial applications, including dramatically higher capacity for optical data storage.   view more (2006-09-07)

Porous Silicon Joining Humans To Machines
Porous silicon was discovered as scientists attempted to electropolish silicon with an electrolyte containing hydrofluoric acid. The acid left a number of quantum dots in the silicon which trap electrons making it an efficient, luminescent semiconductor. The initial research findings from De Montfort suggest that the material may also be... view more... (1999-03-26)

NIST team proves bridge from conventional to molecular electronics possible
Researchers at the National Institute of Standards and Technology (NIST) have set the stage for building the "evolutionary link" between the microelectronics of today built from semiconductor compounds and future generations of devices made largely from complex organic molecules.   view more (2008-03-19)

UF engineer develops tiny, easily mass-produced motion sensor
A University of Florida engineer is the latest researcher to design a tiny, easy-to-manufacture motion sensor, a development that could help popularize the sensors as standard equipment in personal electronics, medical devices and other applications.   view more (2006-02-10)

Case Western Reserve researchers develop 'wireless' activation of brain circuits
Traditionally, stimulating nerves or brain tissue involves cumbersome wiring and a sharp metal electrode. But a team of researchers at Case Western Reserve University is going "wireless."   view more (2009-02-24)

Placing single nanowires: NIST makes the connection
Researchers at the National Institute of Standards and Technology (NIST) have devised a system for manipulating and precisely positioning individual nanowires on semiconductor wafers.   view more (2007-04-30)

Graphene nanoelectronics: Making tomorrow's computers from a pencil trace
A key discovery at Rensselaer Polytechnic Institute could help advance the role of graphene as a possible heir to copper and silicon in nanoelectronics.   view more (2007-07-24)

Tension in the nanoworld
A joint team of researchers at CIC nanoGUNE (San Sebastian, Spain) and the Max Planck Institutes of Biochemistry and Plasma Physics (Munich, Germany) report the non-invasive and nanoscale resolved infrared mapping of strain fields in semiconductors.   view more (2009-01-26)

Princeton researchers discover new type of laser
A Princeton-led team of researchers has discovered an entirely new mechanism for making common electronic materials emit laser beams. The finding could lead to lasers that operate more efficiently and at higher temperatures than existing devices, and find applications in environmental monitoring and medical diagnostics.   view more (2008-12-23)

Toumaz Technology Set For Expansion After Attracting £1.5 Million Investment
Toumaz Technology Ltd, a developer of advanced semiconductors, has attracted an investment of £1.5 million from Gennum Corporation, Canada. Toumaz Technology is a spin-out company from Imperial College, London whose ultra low-power (AMx™) Advanced Mixed Signal technology could transform the whole concept of battery operated and mobile... view more... (2004-04-07)

Physicists control the flip of electron spin in new study
Today's computers and other technological gizmos operate on electronic charges, but researchers predict that a new generation of smaller, faster, more efficient devices could be developed based on another scientific concept - electronic "spin.‚Ä? The problem, however, is that researchers have found it challenging to control or predict spin -... view more... (2005-05-27)

Paint-on laser could rescue computer chip industry
Researchers at the University of Toronto have created a laser that could help save the $200-billion dollar computer chip industry from a looming crisis dubbed the "interconnect bottleneck."   view more (2006-04-18)

From 2-D blueprint, material assembles into novel 3-D nanostructures
An international team of scientists affiliated with the University of Wisconsin-Madison Nanoscale Science and Engineering Center has coaxed a self-assembling material into forming never-before-seen, three-dimensional nanoscale structures, with potential applications ranging from catalysis and chemical separation to semiconductor manufacturing.   view more (2006-01-30)

Researchers get neurons and silicon talking
European researchers have created an interface between mammalian neurons and silicon chips.   view more (2006-03-28)

Microwave synthesis connects with the (quantum) dots
Materials researchers at the National Institute of Standards and Technology (NIST) have developed a simplified, low-cost process for producing high-quality, water-soluble "quantum dots" for biological research.   view more (2008-06-13)

Researchers create new super-thin laser mirror
Engineers at the University of California, Berkeley, have created a new high-performance mirror that could dramatically improve the design and efficiency of the next generation of devices relying upon laser optics, including high-definition DVD players, computer circuits and laser printers.   view more (2007-02-14)

Compact, wavelength-on-demand Quantum Cascade Laser chip offers ultra-sensitive chemical sensing
Engineers from Harvard University have demonstrated a highly versatile, compact and portable Quantum Cascade Laser sensor for the fast detection of a large number of chemicals, ranging from infinitesimal traces of gases to liquids, by broad tuning of the emission wavelength.   view more (2007-12-04)

Scientists demonstrate method for integrating nanowire devices directly onto silicon
Applied scientists at Harvard University in collaboration with researchers from the German universities of Jena, Gottingen, and Bremen, have developed a new technique for fabricating nanowire photonic and electronic integrated circuits that may one day be suitable for high-volume commercial production.   view more (2008-05-09)

Tiny lasers get a notch up
Tiny disk-shaped lasers as small as a speck of dust could one day beam information through optical computers. Unfortunately, a perfect disk will spray light out, not as a beam, but in all directions.   view more (2009-01-23)

New nanosensor uses quantum dots to detect DNA
Using tiny semiconductor crystals, biological probes and a laser, Johns Hopkins University engineers have developed a new method of finding specific sequences of DNA by making them light up beneath a microscope.   view more (2005-12-06)
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