Subscribe free to our newsletters via your
. Solar Energy News .




TECH SPACE
Bubbles are the new lenses for nanoscale light beams
by Staff Writers
Philadelphia PA (SPX) Aug 15, 2013


A nanoscale light beam modulated by short electromagnetic waves, known as surface plasmon polaritons -- labelled as SPP beam -- enters the bubble lens, officially known as a reconfigurable plasmofluidic lens. The bubble controls the light waves, while the grating provides further focus. Credit: Tony Jun Huang, Penn State.

Bending light beams to your whim sounds like a job for a wizard or an a complex array of bulky mirrors, lenses and prisms, but a few tiny liquid bubbles may be all that is necessary to open the doors for next-generation, high-speed circuits and displays, according to Penn State researchers.

To combine the speed of optical communication with the portability of electronic circuitry, researchers use nanoplasmonics -- devices that use short electromagnetic waves to modulate light on the nanometer scale, where conventional optics do not work. However, aiming and focusing this modulated light beam at desired targets is difficult.

"There are different solid-state devices to control (light beams), to switch them or modulate them, but the tenability and reconfigurability are very limited," said Tony Jun Huang, associate professor of engineering science and mechanics. "Using a bubble has a lot of advantages."

The main advantage of a bubble lens is just how quickly and easily researchers can reconfigure the bubble's location, size, and shape -- all of which affect the direction and focus of any light beam passing through it.

Huang's team created separate simulations of the light beams and bubble lens to predict their behaviors and optimize conditions before combining the two in the laboratory. They published their findings in Nature Communications.

To form the bubble lens, researchers used a low-intensity laser to heat water on a gold surface. The tiny bubble's optical behavior remains consistent as long as the laser's power and the environmental temperature stay constant.

Simply moving the laser or adjusting the laser's power can change how the bubble will deflect a light beam, either as a concentrated beam at a specific target or as a dispersed wave. Changing the liquid also affects how a light beam will refract.

The materials to form bubble lenses are inexpensive, and the bubbles themselves are easy to dissolve, replace and move.

"In addition to its unprecedented reconfigurability and tenability, our bubble lens has at least one more advantage over its solid-state counterparts: its natural smoothness," said Huang. "The smoother the lens is, the better quality of the light that pass through it."

Huang believes that the next step is to find out how the bubble's shape influences the direction of the light beam and the location of its focal point. Fine control over these light beams will enable improvements for on-chip biomedical devices and super resolution imaging.

"For all these applications, you really need to precisely control light in nanoscale, and that's where this work can be a very important component," said Huang.

Chenglong Zhao, postdoctoral fellow in engineering science and mechanics, Penn State, designed and conducted the experiment; Yongmin Liu, assistant professor of mechanical and industrial engineering, and electrical and computer engineering, Northeastern University, worked with Nicholas Fang, associate professor of mechanical engineering, MIT, to analyze the results and develop simulations; and Yanhui Zhao, graduate student in engineering science and mechanics, Penn State, fabricated the materials. The National Institutes of Health, the National Science Foundation, and the Penn State Center for Nanoscale Science funded this study.

.


Related Links
Penn State
Space Technology News - Applications and Research






Comment on this article via your Facebook, Yahoo, AOL, Hotmail login.

Share this article via these popular social media networks
del.icio.usdel.icio.us DiggDigg RedditReddit GoogleGoogle








TECH SPACE
Researchers Get Better Metrics on Laser Potential of Key Material
Raleigh, NC (SPX) Jul 29, 2013
Researchers from North Carolina State University have developed more accurate measurements of how efficiently a polymer called MEH-PPV amplifies light, which should advance efforts to develop a new generation of lasers and photonic devices. "By improving our understanding of this material, we get closer to the longstanding industry goal of using MEH-PPV to create cheaper, more flexible pho ... read more


TECH SPACE
Microbial Who-Done-It For Biofuels

Microorganisms found in salt flats could offer new path to green hydrogen fuel

CSU researchers explore creating biofuels through photosynthesis

Drought response identified in potential biofuel plant

TECH SPACE
Computer scientists envision computer chip working like a human brain

Researchers create 'soft robotic' devices using water-based gels

Talking robot sent to ISS to 'get along' with humans

SkySweeper Robot Makes Inspecting Power Lines Simple and Inexpensive

TECH SPACE
Localized wind power blowing more near homes, farms and factories

Price of Wind Energy in the United States Is Near an All-Time Low

GDF Suez sells half-share of Portuguese renewable, thermal holdings

SOWITEC Mexico - strengthening its permitted project pipeline

TECH SPACE
High temperature capacitor could pave the way for electric vehicle

China vehicle sales growth slows in July

S. Korea tests 'electric road' for public buses

BMW China venture to recall more than 140,000 cars: officials

TECH SPACE
Cameron voices strong backing for British shale gas development

Technip, Dof announce Petrobras pipeline contract

Deteriorating situation in Nigeria worries oil majors

Uruguay finds onshore oil, looking at commercial angle

TECH SPACE
Japan to go nuclear-free during safety checks

BWRPLUS Formed to Leverage Synergy between Westinghouse and Toshiba

SMRs Won't Revive Failed 'Nuclear Renaissance'

Smoke causes incident at closed French nuclear plant

TECH SPACE
China aims to boost green sector

Air conditioners off as S. Korea faces power crisis

S. Korea facing power crisis

White House, Energy Department call for power grid protection

TECH SPACE
One tree's architecture reveals secrets of a forest

Could planting trees in the desert mitigate climate change

Wasps being used to fight tree disease

Drought making trees more susceptible to dying in forest fires




The content herein, unless otherwise known to be public domain, are Copyright 1995-2014 - Space Media Network. AFP, UPI and IANS news wire stories are copyright Agence France-Presse, United Press International and Indo-Asia News Service. ESA Portal Reports are copyright European Space Agency. All NASA sourced material is public domain. Additional copyrights may apply in whole or part to other bona fide parties. Advertising does not imply endorsement,agreement or approval of any opinions, statements or information provided by Space Media Network on any Web page published or hosted by Space Media Network. Privacy Statement