Tuesday, June 25, 2013

For Sharpest Views, Scope The Sky With Quick-Change Mirrors

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For Sharpest Views, Scope The Sky With Quick-Change Mirrors
A technology called adaptive optics is enabling astronomers to peer into space as never before. The specialized telescopes, which have mirrors that can adjust their shapes up to 1,000 times per second, compensate for the blurring that happens when light passes through Earth's atmosphere. Planet hunters are thrilled.

Source: NPR
Posted on: Monday, Jun 24, 2013, 8:46am
Views: 20

Source: http://www.labspaces.net/128755/For_Sharpest_Views__Scope_The_Sky_With_Quick_Change_Mirrors

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Monday, June 24, 2013

'Supermoon' lights up night sky

The night sky has been illuminated by what appears to be a much bigger and brighter Moon.

The so-called "supermoon" occurs when the Moon reaches its closest point to earth, known as a perigee full moon.

The effect makes the Moon seem 14% bigger and 30% brighter than when it is furthest from the planet.

Skywatchers who miss the phenomenon this weekend because of cloudy skies will have to wait until August 2014 for the next one.

Space expert Heather Couper said "supermoons" were the result of coincidence.

"The Moon goes round in an oval orbit so it can come very close to us, and if that coincides with a full moon, then it can look absolutely enormous," she told BBC Radio 4's Today programme.

She explained that when the Moon was high in the sky, it looked normal.

But as it got closer to the horizon, a "kind of optical illusion" occurred where it looked bigger when compared with trees or houses, she said.

She suggested it might be possible to dispel the illusion by turning away from the Moon, bending over and looking at the sky from between your legs.

Writing in Sky and Telescope about the "myth of the supermoon", Shari Balouchi said much of what we called the supermoon was just our eyes playing tricks on us.

"The supermoon might look bigger than normal if you see it in the evening when the Moon's just rising, but the real size difference isn't big enough to notice."

BBC Weather's Darren Bett said he was confident most people in the UK would have been able to see the Moon at some point on Saturday night, even if only fleetingly.

Sunday night should be better, he added, with people in south-west England and south Wales likely to have the clearest views of the Moon.

However Marek Kukula, public astronomer at the Royal Observatory Greenwich, said people should not expect the supermoon to look that much bigger than normal.

"It won't fill the sky," he said.

"It's at its most impressive when the Moon is close to the horizon, ie when it's rising or setting - people will need to check online for rising and setting times for their locality."

Dr Kukula said the US Naval Observatory and HM Nautical Almanac Office had online tools for checking the moon's rising and setting times.

Scientists have dismissed the idea that the perigee can cause strange behaviour, like lycanthropy or natural disasters.

Dr Couper said the tides this weekend would be unaffected.

Source: http://www.bbc.co.uk/news/uk-23013393#sa-ns_mchannel=rss&ns_source=PublicRSS20-sa

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FIFA reconsiders 3D World Cup 2014 coverage after ESPN 3D shutdown

ESPN 3D launched in 2010 with coverage of 25 FIFA World Cup matches, but word that the channel will be mothballed has the international football association reviewing whether it will use the tech in 2014. An Associated Press report quotes FIFA director of television Niclas Ericson saying that there is interest from several broadcasters in a 3D presentation, but the cost is currently under review. While FIFA focuses on its standard HD broadcasts, it's also thinking over offering 4K Ultra HD coverage, which is currently being tested during Confederations Cup matches. The Hollywood Reporter points out that while Sony has backed off some of the sponsorships that pushed early 3D productions, it's providing some of the equipment for UHDTV tests like its F55 4K camera. Japan's Ministry of Internal Affairs and Communications is already in line for a 4K soccer broadcast in 2014, we'll see if it's put to use alongside new goal-line technology.

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Source: Associated Press

Source: http://www.engadget.com/2013/06/23/fifa-reconsiders-3d-world-cup-2014-coverage-after-espn-3d-shutdo/?utm_medium=feed&utm_source=Feed_Classic&utm_campaign=Engadget

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Saturday, June 22, 2013

Scientists clear quantum computing hurdle

Researchers have devised a new way to prevent neighboring quantum bits from interfering with each other, bringing large-scale quantum computing one step closer to reality.

By Eoin O'Carroll,?Staff / June 19, 2013

This illustration looks nothing like an actual atom. The electrons that orbit an atomic nucleus are actually in all possible places at the same time.

Illustration by Jake Turcotte

Enlarge

Large-scale quantum computing, that is, leveraging the seemingly paradoxical behavior of subatomic particles to develop blazingly fast computers, is now one step closer to reality, now that scientists have found a way to better control how these particles behave.?

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Normal computers store information in binary digits, or bits. A bit can have only one of two values, most commonly represented by a 0 or a 1. Bits can be embodied in levers, punch cards, vacuum tubes, magnetic strips, tiny pits on compact discs, electrical capacitors, or any thing that can have two distinct states. ?

Quantum computers, by contrast, use quantum bits, or qubits, which arise out of the properties of elementary particles. At the atomic and subatomic scales, the rules seem to be different from those for larger objects. An electron, for instance, exists in more than one place at the same time. The same goes for the magnitude of its angular momentum, or "spin," which can have more than one value at the same time. ??

This behavior, called quantum superposition, allows qubits to have values of 0, 1, or both, all at the same time, creating the potential for computers that can carry out incredibly complex calculations in a fraction of the time that it would take a traditional computer. One of the most promising ways to create quantum computer chips is to use electrodes to control and harness the superposed spins of electrons bound to phosphorous atoms within silicon chips.?

But researchers attempting to do this kept running into a problem: When you change the spin of one electron, you end up affecting the spin of the ones next to it. Think of it like a garage door opener that opens every garage on the street.

In the current issue of the journal Nature Communications, scientists at the University of New South Wales in Sydney, Australia, working with theorists at Sandia National Laboratories in New Mexico say they have found a way around this inadvertent quantum jostling.?

?It is a daunting challenge to rotate the spin of each qubit individually,? says Holger B?ch, a UNSW doctoral candidate and lead author of the new study, in a press release.

Mr.?B?ch and his colleagues found that, if each electron is bound to a different number of phosphorous atoms than its neighbor, each will respond differently to a tuned electromagnetic frequency, allowing each qubit to be distinguished from the ones around it.

?This is an elegant and satisfying piece of work,? said UNSW Professor Michelle Simmons, B?ch's Ph.D advisor. "This first demonstration that we can maintain long spin lifetimes of electrons on multi-donor systems is very powerful. It offers a new method for addressing individual qubits, putting us one step closer to realising a practical, large-scale quantum computer."

Source: http://rss.csmonitor.com/~r/feeds/science/~3/9WGoA7aEm5Y/Scientists-clear-quantum-computing-hurdle

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Greece returns to jolt markets

LONDON (AP) ? Greece returned to stalk the financial markets Friday at the end of a turbulent week that's been dominated by a signal from the U.S. Federal Reserve that it may be done with its monetary stimulus.

Though trading had shown signs of settling down, developments in Athens provided investors with a clear reminder that the country's problems are a long way from being fixed.

"The euro area's problems are back in the spotlight with an all-familiar cast," said Neil Mellor, an analyst at Bank of New York Mellon.

The catalyst behind this time was one of the country's governing parties pulling its two cabinet ministers from the cabinet following a dispute over state broadcaster ERT.

Even without the support of the Democratic Left, the government led by conservative Prime Minister Antonis Samaras can survive as the other coalition partner, socialist Pasok, remains. However, the majority in Parliament will be paltry and raises questions over the government's ability to survive for long and pursue the package of austerity measures and reforms demanded by the country's bailout creditors.

As a result, the yield, or interest rate, on Greece's 10-year bonds was up 0.57 percentage point at 11.12 percent, slightly down on its earlier 2013 high of 11.45 percent. The main stock market in Athens was down 6 percent.

The return of Greece to the forefront of investor attentions fed through into markets in Europe and stock indexes, which had been trading higher earlier in the day. The euro was a notable casualty too, trading 0.97 percent lower at $1.3104.

In Europe, Germany's DAX was down 1.76 percent at 7,789, while the CAC-40 in France fell 1.11 percent at 3,658. The FTSE 100 index of leading British shares was 0.7 percent lower at 6,116.

In the U.S., the Dow Jones industrial average was down 0.38 percent at 14,703 while the S&P 500 index was down 0.46 percent to 1,580.

Despite the worries over Greece, trading was not as frantic as in the aftermath of Wednesday's comments from U.S. Federal Reserve Chairman Ben Bernanke that the central bank's bond purchases would likely slow down this year and end in 2014.

Bernanke's admission had prompted widespread concerns among investors, who have grown used to the central bank's money-creation policies over the past few years. Stocks have taken a particular pounding, with the Dow Jones index suffering a 560 point slide on Thursday alone. Other assets, such as commodities, including gold, and U.S. Treasuries, have also suffered drastic drops.

The main point of interest for markets is the uncertainty over the Fed's exit strategy. The new money the Fed has created through its bond-buying program over nearly five years has been designed to shore up the U.S. economy. However, it has also been a major factor behind market developments.

The prospect that the policy will be unwound sooner than many investors thought prompted the big moves over the past couple of days despite U.S. economic data pointing to a solid recovery that may be able to sustain itself without outside support from the Fed. Stocks, government bonds, in particular U.S. Treasuries, got hammered, while the dollar surged.

Elsewhere, markets were echoing developments in stocks ? for example, early oil price gains evaporated, and the benchmark New York price was down $1.87 cents at $93.27 a barrel.

Earlier in Asia, Japan's Nikkei 225, the region's biggest benchmark, bucked the losing trend in Asia, as the yen weakened against the dollar. That helps the country's exporters by making their products more competitive abroad. The Nikkei rose 1.7 percent to close at 13,230.13.

Source: http://news.yahoo.com/greece-returns-jolt-markets-150506385.html

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Friday, June 21, 2013

James Gandolfini Dead At 51

51-year-old 'Sopranos' star reportedly suffers heart attack in Italy.
By Emily Blake

Source: http://www.mtv.com/news/articles/1709340/james-gandolfini-dead.jhtml

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Particle accelerator that can fit on a tabletop opens new chapter for science research

June 20, 2013 ? Physicists at The University of Texas at Austin have built a tabletop particle accelerator that can generate energies and speeds previously reached only by major facilities that are hundreds of meters long and cost hundreds of millions of dollars to build.

"We have accelerated about half a billion electrons to 2 gigaelectronvolts over a distance of about 1 inch," said Mike Downer, professor of physics in the College of Natural Sciences. "Until now that degree of energy and focus has required a conventional accelerator that stretches more than the length of two football fields. It's a downsizing of a factor of approximately 10,000."

The results, which were published this week in Nature Communications, mark a major milestone in the advance toward the day when multi-gigaelectronvolt (GeV) laser plasma accelerators are standard equipment in research laboratories around the world.

Downer said he expects 10 GeV accelerators of a few inches in length to be developed within the next few years, and he believes 20 GeV accelerators of similar size could be developed within a decade.

Downer said that the electrons from the current 2 GeV accelerator can be converted into "hard" X-rays as bright as those from large-scale facilities. He believes that with further refinement they could even drive an X-ray free electron laser, the brightest X-ray source currently available to science.

A tabletop X-ray laser would be transformative for chemists and biologists, who could use the bright X-rays to study the molecular basis of matter and life with atomic precision, and femtosecond time resolution, without traveling to a large national facility.

"The X-rays we'll be able to produce are of femtosecond duration, which is the time scale on which molecules vibrate and the fastest chemical reactions take place," said Downer. "They will have the energy and brightness to enable us to see, for example, the atomic structure of single protein molecules in a living sample."

To generate the energetic electrons capable of producing these X-rays, Downer and his colleagues employed an acceleration method known as laser-plasma acceleration. It involves firing a brief but intensely powerful laser pulse into a puff of gas.

"To a layman it looks like low technology," said Downer. "All you do is make a little puff of gas with the right density and profile. The laser pulse comes in. It ionizes that gas and makes the plasma, but it also imprints structure in it. It separates electrons from the ion background and creates these enormous internal space-charge fields. Then the charged particles emerge right out of the plasma, get trapped in those fields, which are racing along at nearly the speed of light with that laser pulse, and accelerate in them."

Downer compared it to what would happen if you threw a motorboat into a lake with its engines churning. The boat (the laser) makes a splash, then creates a wave as it moves through the lake at high speed. During that initial splash some droplets (charged particles) break off, get caught up in the wave and accelerate by surfing on it.

"At the other end of the lake they get thrown off into the environment at incredibly high speeds," said Downer. "That's our 2 GeV electron beam."

Former UT Austin physicist Toshiki Tajima and the late UCLA physicist John Dawson conceived the idea of laser-plasma acceleration in the late 1970s. Scientists have been experimenting with this concept since the early 1990s, but they've been limited by the power of their lasers. As a result the field had been stuck at a maximum energy of about 1 GeV for years.

Downer and his colleagues were able to use the Texas Petawatt Laser, one of the most powerful lasers in the world, to push past this barrier. In particular the petawatt laser enabled them to use gases that are much less dense than those used in previous experiments.

"At a lower density, that laser pulse can travel faster through the gas," said Downer. "But with the earlier generations of lasers, when the density got too low, there wasn't enough of a splash to inject electrons into the accelerator, so you got nothing out. This is where the petawatt laser comes in. When it enters low density plasma, it can make a bigger splash."

Downer said that now that he and his team have demonstrated the workability of the 2 GeV accelerator, it should be only a matter of time until 10 GeV accelerators are built. That threshold is significant because 10 GeV devices would be able to do the X-ray analyses that biologists and chemists want.

"I don't think a major breakthrough is required to get there," he said. "If we can just keep the funding in place for the next few years, all of this is going to happen. Companies are now selling petawatt lasers commercially, and as we get better at doing this, companies will come into being to make 10 GeV accelerator modules. Then the end users, the chemists and biologists, will come in, and that will lead to more innovations and discoveries."

Source: http://feeds.sciencedaily.com/~r/sciencedaily/top_news/top_technology/~3/9LhwOQQGWK8/130620132412.htm

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