Friday, 17 May 2013

Stacking 2-D materials produces surprising results

May 16, 2013 ? New experiments reveal previously unseen effects, could lead to new kinds of electronics and optical devices. Graphene has dazzled scientists, ever since its discovery more than a decade ago, with its unequalled electronic properties, its strength and its light weight. But one long-sought goal has proved elusive: how to engineer into graphene a property called a band gap, which would be necessary to use the material to make transistors and other electronic devices.

Now, new findings by researchers at MIT are a major step toward making graphene with this coveted property. The work could also lead to revisions in some theoretical predictions in graphene physics.

The new technique involves placing a sheet of graphene -- a carbon-based material whose structure is just one atom thick -- on top of hexagonal boron nitride, another one-atom-thick material with similar properties. The resulting material shares graphene's amazing ability to conduct electrons, while adding the band gap necessary to form transistors and other semiconductor devices.

The work is described in a paper in the journal Science co-authored by Pablo Jarillo-Herrero, the Mitsui Career Development Assistant Professor of Physics at MIT, Professor of Physics Ray Ashoori, and 10 others.

"By combining two materials," Jarillo-Herrero says, "we created a hybrid material that has different properties than either of the two."

Graphene is an extremely good conductor of electrons, while boron nitride is a good insulator, blocking the passage of electrons. "We made a high-quality semiconductor by putting them together," Jarillo-Herrero explains. Semiconductors, which can switch between conducting and insulating states, are the basis for all modern electronics.

To make the hybrid material work, the researchers had to align, with near perfection, the atomic lattices of the two materials, which both consist of a series of hexagons. The size of the hexagons (known as the lattice constant) in the two materials is almost the same, but not quite: Those in boron nitride are 1.8 percent larger. So while it is possible to line the hexagons up almost perfectly in one place, over a larger area the pattern goes in and out of register.

At this point, the researchers say they must rely on chance to get the angular alignment for the desired electronic properties in the resulting stack. However, the alignment turns out to be correct about one time out of 15, they say.

"The qualities of the boron nitride bleed over into the graphene," Ashoori says. But what's most "spectacular," he adds, is that the properties of the resulting semiconductor can be "tuned" by just slightly rotating one sheet relative to the other, allowing for a spectrum of materials with varied electronic characteristics.

Others have made graphene into a semiconductor by etching the sheets into narrow ribbons, Ashoori says, but such an approach substantially degrades graphene's electrical properties. By contrast, the new method appears to produce no such degradation.

The band gap created so far in the material is smaller than that needed for practical electronic devices; finding ways of increasing it will require further work, the researchers say.

"If ? a large band gap could be engineered, it could have applications in all of digital electronics," Jarillo-Herrero says. But even at its present level, he adds, this approach could be applied to some optoelectronic applications, such as photodetectors.

The results "surprised us pleasantly," Ashoori says, and will require some explanation by theorists. Because of the difference in lattice constants of the two materials, the researchers had predicted that the hybrid's properties would vary from place to place. Instead, they found a constant, and unexpectedly large, band gap across the whole surface.

In addition, Jarillo-Herrero says, the magnitude of the change in electrical properties produced by putting the two materials together "is much larger than theory predicts."

The MIT team also observed an interesting new physical phenomenon. When exposed to a magnetic field, the material exhibits fractal properties -- known as a Hofstadter butterfly energy spectrum -- that were described decades ago by theorists, but thought impossible in the real world. There is intense research in this area; two other research groups also report on these Hofstadter butterfly effects this week in the journal Nature.

The research included postdocs Ben Hunt and Andrea Young and graduate student Javier Sanchez-Yamagishi, as well as six other researchers from the University of Arizona, the National Institute for Materials Science in Tsukuba, Japan, and Tohoku University in Japan. The work was funded by the U.S. Department of Energy, the Gordon and Betty Moore Foundation and the National Science Foundation.

Source: http://feeds.sciencedaily.com/~r/sciencedaily/matter_energy/electronics/~3/HeXraUY5CA0/130516182025.htm

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Thursday, 16 May 2013

How To Love | Clutch Magazine

There have been books, movies, magazines, classes, songs, essays, etc. dedicated to showing people the way to go when it comes to romance and relationships. Many of us have sought our cues from these mediums, while some have preferred to learn their love?lessons?from trusted friends and family; others have made it their business to learn from their experiences alone. The majority of folks out there are wise enough to know that there isn?t one method or formula for showing love, but that doesn?t make navigating that path much easier.?Wanting to be ?good? at loving someone enough to the point where you actively seek out tips on how to be a capable partner is a noble?intention. After all, relationships are hard work and many people do not acknowledge or understand this until it?s too late.

With or without the benefit of a Huxtablean pair of parents to look at as a role model growing up, its wise to spend time observing the loving behaviors of other people, particularly our elders, so that we may learn just what love should look like. You can?t use the divorce of your parents as an excuse to suggest that you have no examples to follow; what about your great-aunt and uncle, the couple on your block that has served as the neighborhood?s surrogate?grandparents?or even your sister and her husband who?ve been together since middle school.

Even the examples that we?d prefer not to imitate tend to have some bearing on how we operate. It?s silly to suggest that witnessing a nasty breakup or perpetually abusive relationship wouldn?t impact us in some way. As we become adults, we have to do the work ourselves to ensure that we don?t let these negative experiences become the lens through which we views all relationships. We have to understand that people can be their at their best in love and they can be at their worst. And we have to use both sets of examples to help us choose the proper course.

Life can imitate art when it comes to love; fictionalized characters can allow us to examine the sort of things we are looking for, what actions we consider to be reprehensible and the type of scenarios we should try to avoid when it comes to love. So long as you realize that Darius Lovehall was born in someone?s imagination, its okay to recognize that the character represents certain qualities you may want in a man?just don?t be so naive as to believe there?s someone running around here exactly like that.

Women are encouraged to go out and spend time learning just how to be the best partner we can be, whereas men are get a pass for just winging it to the best of their ability and learning from their mistakes. It?s the nature of our society and while you do have plenty of reasons to want to complain about this, you can?t be terribly surprised when you whip out your copy of The Good Black Woman?s Guide to Loving, Honoring and Serving a Good Black Man, only to find that your beau wouldn?t know about the male equivalent to such a book if was published in his kitchen. Speaking of those books, as much as we may poke fun at some of them, there isn?t anything wrong with reading relationship advice from self-anointed?gurus and experts; just remember to focus on those who truly respect and admire women without attempting to shame you into changing your everything to have a man.

Ultimately, much of what we learn about loving comes from doing and experiencing it. Feeling?neglected?by a college love can help you to understand the importance of being an attentive partner in future relationships. Recognizing the positive reception your nurturing ways got from ex-sweeties might help you to develop your romantic modus operandi, as might allowing yourself to be too giving only to have your kindness taken for granted when it was given too freely. It is from dealing with mates that you will learn the most about what you can and cannot tolerate, what you require from someone else and what it is that you have to offer.

Even if someone wrote a manual specifically dedicated to you and your?pursuit?of ?happily ever after?, its virtually impossible to travel through life without making some mistakes in the romantic realm. Love is a learning process and as you continue to evolve and grow, your capacity to love and the sort of reciprocity you require in return will continue to evolve and change. You will be both challenged and inspired by the people in your?environment?and the?experiences?you have; embrace the fact that you will forever be a student of love and instead of killing yourself to be an expert, you should aspire to be an observant and attentive learner.

Clutchettes and Clutch Gents: looking back at your lives-to-date, where have you learned your most valuable love?lessons? Who have been your role models and how have you learned how to love so far?

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Source: http://www.clutchmagonline.com/2013/05/how-to-love/

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This Great Chris Hadfield At Home Parody Reminds Us Why We Love Space

What makes Chris Hadfield's space videos so great is how mundane they are. He does the same kind of things you do right in your kitchen, as you can see in this fantastic "Hadfield at Home" parody.

Seeing "Chris Hadfield" wring out a towel on Earth just reminds you how unreal it is to see him wring out a towel in zero gravity.

There's also clipping nails, where Hadfield gets used to holding the mike here on boring old Earth with boring old gravity.

If you want to follow Hadfield at Home, he's got a Twitter. It's pretty great, if only to remind us how the real Canadian helped us care about astronauts again.

Source: http://jalopnik.com/this-great-chris-hadfield-at-home-parody-reminds-us-why-507574919

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Rod Stewart's Penis Shrunk From Steroid Use

msnNOW.com:

Maybe he should start singing, "Do you think I'm shrinking."

Consummate showman Rod Stewart has always been willing to sacrifice anything for his audience, and that apparently includes the length of his penis.

Yes, that's the price he had to pay in the late '80s because he was taking steroids to keep his ravaged voice concert-ready.

Read the whole story at msnNOW.com

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Source: http://www.huffingtonpost.com/2013/05/15/rod-stewarts-penis-shrunk_n_3280026.html

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Android reaches 900 million activations

900 million

At the Google I/O keynote in San Francisco, Android and Chrome head Sundar Pichai has just revealed that Android has passed the milestone of 900 million activations, up from 400 million in 2012 and 100 million in 2011.

Pichai called the milestone "an extraordinary ecosystem achievement," but joked "there are 7 billion people in the world, so we have a long way to go, and we think we're just getting started." 

Follow our live coverage of the Google I/O keynote for the rest of the day's news!

    


Source: http://feedproxy.google.com/~r/androidcentral/~3/ig97_lJTH-U/story01.htm

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'The Voice': Vedo Eliminated Along With Garrett Gardner As Top 10 Revealed

Two more contestants are saying goodbye to "The Voice": Vedo from Team Usher and Garrett Gardner from Team Shakira were eliminated.

This week, the choice was up to America and the judges could no longer save their team members. With Garrett and Vedo eliminated, newbie "Voice" coaches Shakira and Usher are down a competitor. Veteran "Voice" coaches Adam Levine and Blake Shelton both have three contestants still in the running.

Kris Thomas from Team Shakira was the first contestant to join the Top 10, then the Swon Brothers from Team Blake, Sarah Simmons from Team Adam, Josiah Hawley from Team Usher, Judith Hill from Team Adam, Danielle Bradbery from Team Blake, Michelle Chamuel from Team Usher, Amber Carrington from Team Adam, Holly Tucker from Team Blake and Sasha Allen from Team Shakira.

Before it was time for Garrett and Vedo to bid farewell to "The Voice," there were some impressive performances. "Voice" mentors Robin Thicke and Pharrell Williams sang "Blurred" along with T.I.; Blake Shelton and his team -- Holly Tucker, the Swon Brothers and Danielle Bradbury -- took on Brooks & Dunn's "Play Something Country"; Lady Antebellum, featuring Team Adam mentor Hillary Scott, performed their song "Goodbye Town," accompanied by Team Adam's Amber Carrington, Judith Hill and Sarah Simmons; and finally, Adam Levine and his team performed The Cure's "Love Song."

Did "The Voice" voters get it right in sending Vedo and Garrett home? Who are you voting for? Sound off in the comments!

"The Voice" airs Mondays and Tuesdays at 8 p.m. ET.

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Source: http://www.huffingtonpost.com/2013/05/14/the-voice-vedo-garrett-gardner-eliminated_n_3276653.html

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