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Scientists design new material to harness power of light
Phys.org ^ | Dec 17, 2018 | University of Massachusetts Lowell

Posted on 12/17/2018 2:30:13 PM PST by ETL

Scientists have long known that synthetic materials—called metamaterials—can manipulate electromagnetic waves such as visible light to make them behave in ways that cannot be found in nature. That has led to breakthroughs such as super-high resolution imaging. Now, UMass Lowell is part of a research team that is taking the technology of manipulating light in a new direction.

The team—which includes collaborators from UMass Lowell, King's College London, Paris Diderot University and the University of Hartford -has created a new class of metamaterial that can be "tuned" to change the color of light.

This technology could someday enable on-chip optical communication in , leading to smaller, faster, cheaper and more power-efficient computer chips with wider bandwidth and better data storage, among other improvements. On-chip optical communication can also create more efficient fiber-optic telecommunication networks.

"Today's computer chips use electrons for computing. Electrons are good because they're tiny," said Prof. Viktor Podolskiy of the Department of Physics and Applied Physics, who is the project's principal investigator at UMass Lowell.

"However, the frequency of electrons is not fast enough. Light is a combination of tiny particles, called photons, which don't have mass. As a result, photons could potentially increase the chip's processing speed."

By converting into pulses of light, on-chip communication will replace obsolete copper wires found on conventional silicon chips, Podolskiy explained. This will enable chip-to-chip and, ultimately, core-to-core communication on the same chip.

"The end result would be the removal of the communication bottleneck, making parallel computing go so much faster," he said, adding that the energy of photons determines the color of light.

"The vast majority of everyday objects, including mirrors, lenses and optical fibers, can steer or absorb these photons.

However, some materials can combine several photons together, resulting in a new photon of higher energy and of different color."

Podolskiy says enabling the interaction of photons is key to information processing and optical computing. "Unfortunately, this nonlinear process is extremely inefficient and suitable materials for promoting the photon interaction are very rare."

Podolskiy and the have discovered that several materials with poor nonlinear characteristics can be combined together, resulting in a new metamaterial that exhibits desired state-of-the-art nonlinear properties.

"The enhancement comes from the way the metamaterial reshapes the flow of photons," he said.

"The work opens a new direction in controlling the nonlinear response of materials and may find applications in on-chip optical circuits, drastically improving on-chip communications."

Explore further: New ultrathin optic cavities allow simultaneous color production on an electronic chip

More information: Brian Wells et al, Structural second-order nonlinearity in plasmonic metamaterials, Optica (2018). DOI: 10.1364/OPTICA.5.001502

Journal reference: Optica search and more info website

Provided by: University of Massachusetts Lowell search and more info


TOPICS: Chit/Chat; Science
KEYWORDS: electromagneticwave; light; metamaterials; opticalcircuits; stringtheory; viktorpodolskiy
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To: ETL

21 posted on 12/17/2018 3:55:53 PM PST by UCANSEE2 (Lost my tagline on Flight MH370. Sorry for the inconvenience.)
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To: ETL

Manipulating light can make a cloaking device.


22 posted on 12/17/2018 3:58:33 PM PST by BipolarBob (Have a McClane Christmas : "Now I have a machine gun HO-HO - HO".)
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To: \/\/ayne
"You know, in OUR day we had to WAIT for the computers."

I am going to tell the Grandkids that I was on a *party* line, where several families shared 1 land line, which was managed by a person known as an "operator". There were *no* computers, and *no* cell phone. No LEDs, No satellites, No GPS.

I will brag to them that I was involved in the program that *created* GPS.

23 posted on 12/17/2018 4:24:33 PM PST by marktwain (President Trump and his supporters are the Resistance. His opponents are the Reactionaries.)
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To: ETL

“metamaterial that can be “tuned” to change the color of light.”
Sorry, university geniuses,
but sunglasses were invented in 1929.


24 posted on 12/17/2018 6:01:17 PM PST by bunkerhill7
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To: fieldmarshaldj; ETL; 6SJ7; AdmSmith; AFPhys; Arkinsaw; allmost; aristotleman; autumnraine; ...
Thanks fieldmarshaldj. Back in my day, that was the CD player, "the power of light". I think. My day was back there far enough I'm not sure now.

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25 posted on 12/17/2018 6:33:35 PM PST by SunkenCiv (and btw -- https://www.gofundme.com/for-rotator-cuff-repair-surgery)
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To: \/\/ayne

Yep. In the old days we had to flip memory bits manually with a magnet.


26 posted on 12/17/2018 6:47:29 PM PST by Nateman (If the left is not screaming, you are doing it wrong)
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To: ETL

Intel bragged four years ago their next generation of microprocessors would have this.

Intel, where is it?


27 posted on 12/17/2018 7:24:28 PM PST by ConservativeMind (Trump: Befuddling Democrats, Republicans, and the Media for the benefit of the US and all mankind.)
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To: ETL
Woo hoo! It will be easier than ever to have changeable mood lighting in automobiles!

Sorry - as I get older, my mind is too tired to think all sciency....

28 posted on 12/18/2018 3:23:02 AM PST by trebb (Those who don't donate anything tend to be empty gasbags...no-value-added types)
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