Saturday, February 14, 2015

Exotic states materialize with supercomputers

Exotic states materialize with supercomputers

Scientists used supercomputers to find a new class of materials that possess an exotic state of matter known as the quantum spin Hall effect. The researchers published their results in the journal Science in December 2014, where they propose a new type of transistor made from these materials.

The science team included Ju Li, Liang Fu, Xiaofeng Qian, and Junwei Liu, experts in topological phases of matter and two-dimensional materials research at the Massachusetts Institute of Technology (MIT). They calculated the electronic structures of the materials using the Stampede and Lonestar supercomputers of the Texas Advanced Computing Center.

The computational allocation was made through XSEDE, the Extreme Science and Engineering Discovery Environment, a single virtual system funded by the National Science Foundation (NSF) that scientists use to interactively share computing resources, data and expertise. The study was funded by the U.S. Department of Energy and the NSF.

"To me, national computing resources like XSEDE, or specifically the Stampede and Lonestar supercomputers, are extremely helpful to computational scientists," Xiaofeng Qian said. In January 2015, Qian left MIT to join Texas A&M University as the first tenure-track assistant professor at its newly formed Department of Materials Science and Engineering.

What Qian and colleagues did was purely theoretical work, using Stampede for part of the calculations that modeled the interactions of atoms in the novel materials, two-dimensional transition metal dichalcogenides (TMDC). Qian used the molecular dynamics simulation software Vienna Ab initio Simulation Package to model a unit cell of atoms, the basic building block of the crystal lattice of TMDC.

"If you look at the unit cell, it's not large. They are just a few atoms. However, the problem is that we need to predict the band structure of charge carriers in their excited states in the presence of spin coupling as accurately as possible," Qian said.

Scientists diagram the electronic band structure of materials to show the energy ranges an electron is allowed, with the band gap showing forbidden zones that basically block the flow of current. Spin coupling accounts for the electromagnetic interactions between electron's spin and magnetic field generated from the electron's motion around the nucleus. 

The complexity lies in the details of these interactions, for which Qian applied many-body perturbation theory with the GW approximation, a state-of-the-art first principles method, to calculate the quasiparticle electronic structures for electrons and holes. The 'G' is short for Green's Function and 'W' for screened Coulomb interaction, Qian explained.

This diagram illustrates the concept behind the MIT team's vision of a new kind of electronic device based on 2-D materials. The 2-D material is at the middle of a layered "sandwich," with layers of another material, boron nitride, at top and bottom (shown in gray). When an electric field is applied to the material, by way of the rectangular areas at top, it switches the quantum state of the middle layer (yellow areas). The boundaries of these "switched" regions act as perfect quantum wires, potentially leading to new electronic devices with low losses. (Credit: Yan Lian, MIT.) "In order to carry out these calculations to obtain reasonable convergence in the results, we have to use 96 cores, sometimes even more," Qian said. "And then we need them for 24 hours. The Stampede computer is very efficient and powerful. The work that we have been showing is not just one material; we have several other materials as well as different conditions. In this sense, access to the resources, especially Stampede, is very helpful to our project."

The big picture for Qian and his colleagues is the hunt for new kinds of materials with extraordinarily useful properties. Their target is room-temperature quantum spin Hall insulators, which are basically near-two-dimensional materials that block current flow everywhere except along their edges. "Along the edges you have the so-called spin up electron flow in one direction, and at the same time you have spin down electrons and flows away in the opposite direction," Qian explained. "Basically, you can imagine, by controlling the injection of charge carriers, one can come up with spintronics, or electronics."

The scientists in this work proposed a topological field-effect transistor, made of sheets of hexagonal boron interlaced with sheets of TMDC. "We found a very convenient method to control the topological phase transition in these quantum spin Hall interlayers," Qian said. "This is very important because once we have this capability to control the phase transition, we can design some electronic devices that can be controlled easily through electrical fields."

Qian stressed that this work lays the theoretical ground for future real experiments in the lab. He hopes it might develop into an actual transistor suitable for a quantum computer, basically an as-yet-unrealized machine that manipulates data beyond just the binary of ones and zeros.

"So far, we haven't looked into the detailed applications for quantum computing yet," Qian said. "However, it is possible to combine these materials with superconductors and come up with the so-called Majorana fermion zero mode for quantum computing."

Men and Women. You may want to read this

Scientists tackle issue of how to get a first date in a digital world

Choosing a screen name with a letter starting in the top half of the alphabet is as important as an attractive photo and a fluent headline in the online dating game, reveals an analysis of the best ways of finding love in the digital world, and published online in the journal Evidence Based Medicine.

The researchers wanted to find out what approaches would maximise the chances of converting online contact between men and women into that all-important first face to face meeting, using published research on the art of attraction and persuasion.

They therefore carried out an extensive search of relevant studies in the fields of psychology and sociology, as well as computer, behavioural, and neurocognitive sciences.

Out of almost 4000 studies, 86 met their inclusion criteria. The study findings were pooled and synthesised to come up with a list of dos and don'ts for online dating, from creating a profile to making an approach.

They found that the screen name chosen for an online profile is important. The lovelorn should avoid names with negative associations, such as 'Little' or 'Bug', and aim for something more playful, such as 'Fun2bwith' as this type of name is universally attractive.

And would-be daters should take gender into consideration: men are more drawn to names that indicate physical attractiveness, such as 'Blondie' or 'Cutie' while women go for names that signal intelligence, such as 'Cultured.'

But it may be even more important to start a screen name with a letter in the top half of the alphabet, say the researchers. That's because several measures of success, such as educational attainment and income are linked to names higher up the alphabet, added to which search engines sort names alphabetically.

But choose carefully, say the researchers, who recommend looking at the profiles of other people you find attractive and using a similar screen name to theirs.

It goes without saying that an attractive photo is essential. But be sure to include one that features a genuine smile that crinkles up the eyes, and possibly a tilt of the head....And women seeking men should wear red as this is likely to boost the level of interest, the evidence shows.

And don't stop at selfies. Group photos showing other people having a good time in your company, preferably with you right in the middle of the action and touching someone else—but only on the upper arm— will help to convey, respectively, your friendliness, importance, and status.

Incidentally, women find a man more attractive when they see other women smiling at him, say the researchers.

When it comes to the headline message, don't use complex language in the belief that it will make you look more intelligent. It won't. People are naturally drawn to words that are easy to remember and pronounce, and ease of information processing increases likeability, the analysis shows.

"If you can get the potential date to stop and think about your headline message, increasing the exposure time to your primary photo, this will increase their liking [of you]," point out the researchers.

And steer clear of fiction in your profile: apart from anything else, written information could come back to bite you, they warn.

The evidence shows that it's best to provide a 70:30 ratio of who you are, and what you are looking for. And bear in mind that likeability is more attractive than academic achievement, and that a profile that appears genuine is more likely to generate interest.

What traits are most attractive? Men are drawn to physical fitness in women while women prefer bravery and risk-taking rather than kindness and altruism in men.

When it comes to another helpful ingredient, humour, 'show; don't tell,' is the advice. A wittily written profile is likely to be far more successful than just saying that you have a sense of humour, say the researchers.

They go on to provide a list of helpful tips, which, the available evidence suggests, could boost the chances of getting a first date.

Once interest has been piqued:
•Do personalise any email invitations to correspond online
•Do make it short and sweet
•Don't be afraid to use poetry, preferably rhyming with the potential date's headline

Once contact has been made:
•Do ask open questions
•Do respond promptly: eagerness is not turn-off
•Don't write screeds, but enough to indicate generosity with time
•Do introduce humour
•Do disclose some personal information
•Don't sell yourself as a rare commodity that is worth having

If on a webcam:
•Do smile
•Do mimic body language
•Don't slouch
•Do pay genuine compliments, but don't flatter
•Don't portray yourself as perfect: it arouses suspicion
•Do end every conversation on a positive note/with a positive revelation about yourself

And finally, don't leave it too long before arranging a face to face meeting.

Fur puffs are something more complicated than u may think

Cats can see things that are invisible to you.

Cats are considered by many as symbols of mysticism because of their elegant and flexible body, as well as their gaze that can “magnetize” anyone…

Indeed, as recent scientific data shows, there is another reason why cats have a title of ‘mysterious’ creatures. It’s all because cats see things we cannot see with our eyes!

Cats, like some other animals, have the ability to see psychedelic stripes on flowers or fancy patterns on the wings of birds, which are invisible to human vision.

The secret behind the super vision of our four-legged friends is the UV light.

According to a recent study cats, as well as dogs and other animals, can perceive this type of light which humans can’t.

“There are plenty of things that reflect UV radiation, which some sensitive animals are able to see, while we are not,” said Ronald Douglas, professor of biology of the City University of London and co-author of the study. “For example, these may be certain patterns on flowers that show where the nectar is, or traces of urine of an animal. Also, reindeer can and see polar bears as the snow reflects UV radiation, while white fur does not.”

Therefore, cats, dogs and reindeer can detect with their eyes animals with white fur, while most people will only see… white snow.

Douglas, who specializes in optics, and Glen Jeffery, professor of neuroscience of the University College London, argue that cats, dogs, hedgehogs, rodents, bats, weasels and the okapis can detect significant levels of ultraviolet radiation.
“For decades, we have known that many invertebrates such as bees see ultraviolet light,” continued Douglas, saying that even birds, fish and some reptiles were recently added to the same list.

“However, scientists believed that most mammals cannot see ultraviolet light because they have no visual pigment with maximum sensitivity to ultraviolet light, but instead have lenses like those of humans, preventing ultraviolet light from penetrating into the retina,” he said.

The professor explained that the visual pigments are those that absorb light and turn it into electrical activity, which, in turn, is transmitted through nerve cells. It seems that it is not always necessary for sensitivity to ultraviolet radiation. Instead, transparent parts of the eye such as the cornea and the crystalline lens in some animals transmit wavelengths of ultraviolet light.

This ability allows more light to pass to the retina, “something that would be very useful for a nocturnal cat“, he continued.

It could also explain why cats show so much interest to ordinary objects, such as a piece of paper. Sometimes chemical substances are added to paper, textiles, laundry detergents, shampoos and cosmetics in order to make objects look brighter. Once these optical brighteners absorb the ultraviolet light, they may look differently in the eyes of animals that are sensitive to UV rays.

Some people, for example, those who have undergone cataract surgery, also can see some of the UV light, but most cannot.

“We all know that ultraviolet radiation can be harmful,” said Jeffery in Discovery News. “I work a lot in the Arctic, where the UV radiation levels are too high as there is much snow and ice. The surfaces reflect 90% of UV radiation, with the result that animals are exposed to it. If you do not wear goggles, your eyes will hurt within the first 15 minutes.”

However, studies on reindeer have shown that repeated exposure to ultraviolet light does not bother them at all.

It is possible that cats, deer and some other animals that can detect UV rays have a protective mechanism. Also, scientists believe that UV light tends to create more blur.

“Humans are good at one thing: they can see more details,” added Douglas and concluded: “Maybe that’s why we have a lens that ‘blocks’ ultraviolet light. If you do not have it, the world might appear more blurred.” 

Wednesday, February 11, 2015

To Fall in Love With Anyone, Do This

In Mandy Len Catron’s Modern Love essay, “To Fall in Love With Anyone, Do This,” she refers to a study by the psychologist Arthur Aron (and others) that explores whether intimacy between two strangers can be accelerated by having them ask each other a specific series of personal questions. The 36 questions in the study are broken up into three sets, with each set intended to be more probing than the previous one.The idea is that mutual vulnerability fosters closeness. To quote the study’s authors, “One key pattern associated with the development of a close relationship among peers is sustained, escalating, reciprocal, personal self-disclosure.” Allowing oneself to be vulnerable with another person can be exceedingly difficult, so this exercise forces the issue.
The final task Ms. Catron and her friend try — staring into each other’s eyes for four minutes — is less well documented, with the suggested duration ranging from two minutes to four. But Ms. Catron was unequivocal in her recommendation. “Two minutes is just enough to be terrified,” she told me. “Four really goes somewhere.”

Set I
1. Given the choice of anyone in the world, whom would you want as a dinner guest?
2. Would you like to be famous? In what way?
3. Before making a telephone call, do you ever rehearse what you are going to say? Why?
4. What would constitute a “perfect” day for you?
5. When did you last sing to yourself? To someone else?
6. If you were able to live to the age of 90 and retain either the mind or body of a 30-year-old for the last 60 years of your life, which would you want?
7. Do you have a secret hunch about how you will die?
8. Name three things you and your partner appear to have in common.
9. For what in your life do you feel most grateful?
10. If you could change anything about the way you were raised, what would it be?
11. Take four minutes and tell your partner your life story in as much detail as possible.
12. If you could wake up tomorrow having gained any one quality or ability, what would it    be?
Set II
13. If a crystal ball could tell you the truth about yourself, your life, the future or anything else, what would you want to know?
14. Is there something that you’ve dreamed of doing for a long time? Why haven’t you done it?
15. What is the greatest accomplishment of your life?
16. What do you value most in a friendship?
17. What is your most treasured memory?
18. What is your most terrible memory?
19. If you knew that in one year you would die suddenly, would you change anything about the way you are now living? Why?
20. What does friendship mean to you?
21. What roles do love and affection play in your life?
22. Alternate sharing something you consider a positive characteristic of your partner. Share a total of five items.
23. How close and warm is your family? Do you feel your childhood was happier than most other people’s?
24. How do you feel about your relationship with your mother?
Set III
25. Make three true “we” statements each. For instance, “We are both in this room feeling ... 26. Complete this sentence: “I wish I had someone with whom I could share ..."
27. If you were going to become a close friend with your partner, please share what would be important for him or her to know.
28. Tell your partner what you like about them; be very honest this time, saying things that you might not say to someone you’ve just met.
29. Share with your partner an embarrassing moment in your life.
30. When did you last cry in front of another person? By yourself?
31. Tell your partner something that you like about them already.
32. What, if anything, is too serious to be joked about?
33. If you were to die this evening with no opportunity to communicate with anyone, what would you most regret not having told someone? Why haven’t you told them yet?
34. Your house, containing everything you own, catches fire. After saving your loved ones and pets, you have time to safely make a final dash to save any one item. What would it be? Why?
35. Of all the people in your family, whose death would you find most disturbing? Why?
36. Share a personal problem and ask your partner’s advice on how he or she might handle it. Also, ask your partner to reflect back to you how you seem to be feeling about the problem you have chosen.

Strong Personality

Being a strong person in all aspects of  life very important to everyone. Of course, not all of you can be natural leaders ,but you should understand one thing, this definition may very from person to person.

Nowadays , we are facing many opinions,rules that are falling on our shoulders. Everyone wants to be alike and due to some mainstreams those thousands of unique people becoming just a huge grey mass, that slowly growing collecting more and more people ,that following the system.

My definition is simple. To be a strong person be who you really are inside. Work on your mistakes and work on your good doings. Study. Read as much as you can , and you won't need cheap opinion of society. Be a good man. Bring happiness and develop yourself. Never be late or too early. Find "gold middle". Stay accurate, clean, punctual and calm.


I think I'm asking you to much and maybe I described you a perfect man. But the thing is, that that can be all of us. You just need to have that feeling, which will lead you to success.
Your manners, style - everything counts. Don't look up online how to become somebody with"..."
Become yourself! Work on your unique style, manners ;  read what you like and make schedule that suits you. Always learn something new and be patient. Everything you need , all the sources that you looking for are inside you. Find the key.

I wrote in this post , that you have to disable your sensitivity to public opinions and advices, so now you may ask me why do I blog about all of that.
          I have answer for that too. Once my dad told me : " You may think everyone is stupid and you are the one who's wise. You may be wrong and scared to asked. But once you ask - you'll know the answer , and if you're not you'll stay dumb and ashamed for not knowing it when the right time comes". I am blogging for those people , who want to know. Who's not scared to look stupid for a second, and ready to be wise for life. Never be 100%. Never. There are always something that may bring your world upside down.