Phonon Lasers Make a More Practical Sound
Posted by Mike Favale
Tellcar Innovations, LLC
www.tellcar.com
owner of terahertzspectrum.com
Tuesday, May 28, 2013
Researchers Make 3D Images Without a Camera
Researchers Make 3D Images Without a Camera
Posted by Mike Favale
Tellcar Innovations, LLC
www.tellcar.com
owner of terahertzspectrum.com
Posted by Mike Favale
Tellcar Innovations, LLC
www.tellcar.com
owner of terahertzspectrum.com
Saturday, March 9, 2013
Next Big Future: Tricking CMOS to generate Terahertz frequencies fo...
Next Big Future: Tricking CMOS to generate Terahertz frequencies fo...: Problem: The terahertz range (300 GHz to 3 THz) is the last part of the electromagnetic spectrum that does not have an inexpensive, accessib...
Posted by Mike Favale
Tellcar Innovations, LLC
www.tellcar.com
owner of Terahertz Internet properties
Posted by Mike Favale
Tellcar Innovations, LLC
www.tellcar.com
owner of Terahertz Internet properties
Tuesday, March 5, 2013
Sunday, November 11, 2012
Low-cost Terahertz Signals on Silicon Chips | Flintbox
Low-cost Terahertz Signals on Silicon Chips | Flintbox
posted by
Mike Favale
Tellcar Innovations, llc
www.tellcar.com
posted by
Mike Favale
Tellcar Innovations, llc
www.tellcar.com
Wednesday, November 7, 2012
Imaging chip exploits terahertz spectrum | News | The Engineer
Imaging chip exploits terahertz spectrum | News | The Engineer
posted by
Mike Favale
Tellcar Innovations, LLC
www.tellcar.com
posted by
Mike Favale
Tellcar Innovations, LLC
www.tellcar.com
Terahertz Bandwidth Could Make Cellphones 1,000 Times Faster
By Damon Poeter- March 7, 2012 09:47pm EST
Forget 3G and 4G. In fact, forget about the gigahertz frequency altogether—a team of researchers at the University of Pittsburgh say they've managed to devise a means of transmitting data thousands of times faster.
The team led by Hrvoje Petek, a physics and chemistry professor in Pitt's Kenneth P. Dietrich School of Arts and Sciences, successfully created what they call a "frequency comb" that "spans more than 100 terahertz (THz) of bandwidth by exciting a coherent collective of atomic motions in a semiconductor silicon crystal."
The frequency comb is created by the division of "a single color of light into a series of evenly spaced spectral lines for a variety of uses."
What that means is that Petek and his colleagues have devised a structure that could theoretically transmit data to devices like cellphones and computers in the terahertz frequency region—and in fact observed reflected light oscillating at 15.6 THz during their experiments.
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