Saturday, May 04, 2013

Time Crystals and perpetuum mobile


‘Time Crystals’ Could Upend Physicists’ Theory of Time

  • BY NATALIE WOLCHOVER, SIMONS SCIENCE NEWS
  • 9:30 AM
Physicists plan to create a “time crystal” — a theoretical object that moves in a repeating pattern without using energy — inside a device called an ion trap. Image: Hartmut Häffner
In February 2012, the Nobel Prize-winning physicist Frank Wilczek decided to go public with a strange and, he worried, somewhat embarrassing idea. Impossible as it seemed, Wilczek had developed an apparent proof of “time crystals” — physical structures that move in a repeating pattern, like minute hands rounding clocks, without expending energy or ever winding down. Unlike clocks or any other known objects, time crystals derive their movement not from stored energy but from a break in the symmetry of time, enabling a special form of perpetual motion.
“Most research in physics is continuations of things that have gone before,” said Wilczek, a professor at the Massachusetts Institute of Technology. This, he said, was “kind of outside the box.”
Wilczek’s idea met with a muted response from physicists. Here was a brilliant professor known for developing exotic theories that later entered the mainstream, including the existence of particles called axions and anyons, and discovering a property of nuclear forces known as asymptotic freedom (for which he shared the Nobel Prize in physics in 2004). But perpetual motion, deemed impossible by the fundamental laws of physics, was hard to swallow. Did the work constitute a major breakthrough or faulty logic? Jakub Zakrzewski, a professor of physics and head of atomic optics at Jagiellonian University in Poland who wrote a perspective on the research that accompanied Wilczek’s publication, says: “I simply don’t know.”
Now, a technological advance has made it possible for physicists to test the idea. They plan to build a time crystal, not in the hope that this perpetuum mobile will generate an endless supply of energy (as inventors have striven in vain to do for more than a thousand years) but that it will yield a better theory of time itself.
A Crazy Concept
The idea came to Wilczek while he was preparing a class lecture in 2010. “I was thinking about the classification of crystals, and then it just occurred to me that it’s natural to think about space and time together,” he said. “So if you think about crystals in space, it’s very natural also to think about the classification of crystalline behavior in time.”
When matter crystallizes, its atoms spontaneously organize themselves into the rows, columns and stacks of a three-dimensional lattice. An atom occupies each “lattice point,” but the balance of forces between the atoms prevents them from inhabiting the space between. Because the atoms suddenly have a discrete, rather than continuous, set of choices for where to exist, crystals are said to break the spatial symmetry of nature — the usual rule that all places in space are equivalent. But what about the temporal symmetry of nature — the rule that stable objects stay the same throughout time?
The Nobel Prize-winning physicist Frank Wilczek often develops outlandish theories that eventually enter the mainstream. “Of course not everything I do works,” he says. Image: Frank Wilczek
Wilczek mulled over the possibility for months. Eventually, his equations indicated that atoms could indeed form a regularly repeating lattice in time, returning to their initial arrangement only after discrete (rather than continuous) intervals, thereby breaking time symmetry. Without consuming or producing energy, time crystals would be stable, in what physicists call their “ground state,” despite cyclical variations in structure that scientists say can be interpreted as perpetual motion.
“For a physicist, this is really a crazy concept to think of a ground state which is time-dependent,” said Hartmut Häffner, a quantum physicist at the University of California at Berkeley. “The definition of a ground state is that this is energy-zero. But if the state is time-dependent, that implies that the energy changes or something is changing. Something is moving around.”
How can something move, and keep moving forever, without expending energy? It seemed an absurd idea — a major break from the accepted laws of physics. But Wilczek’s papers on quantum andclassical time crystals (the latter co-authored by Alfred Shapere of the University of Kentucky) survived a panel of expert reviewers and were published in Physical Review Letters in October 2012. Wilczek didn’t claim to know whether objects that break the symmetry of time exist in nature, but he wanted experimentalists to try to make one.
“It’s like you draw targets and wait for arrows to hit them,” he said. “If there’s no logical barrier to this behavior being realized, then I expect it will be realized.”
The Big Test
In June, a group of physicists led by Xiang Zhang, a nanoengineer at Berkeley, and Tongcang Li, a physicist and postdoctoral researcher in Zhang’s group, proposed creating a time crystal in the form of a persistently rotating ring of charged atoms, or ions. (Li said he had been contemplating the idea before reading Wilczek’s papers.) The group’s article was published with Wilczek’s in Physical Review Letters.
Since then, a single critic — Patrick Bruno, a theoretical physicist at the European Synchrotron Radiation Facility in France — has voiced dissent in the academic literature. Bruno thinks Wilczek and company mistakenly identified time-dependent behavior of objects in excited energetic states, rather than their ground states. There is nothing surprising about objects with surplus energy moving in a cyclical fashion, with the motion decaying as the energy dissipates. To be a time crystal, an object must exhibit perpetual motion in its ground state.
Bruno’s comment and Wilczek’s reply appeared in Physical Review Letters in March 2013. Bruno demonstrated that a lower energy state is possible in a model system that Wilczek had proposed as a hypothetical example of a quantum time crystal. Wilczek said that although the example is not a time crystal, he doesn’t think the error “calls into question the basic concepts.”
“I proved that example is not correct,” Bruno said. “But I have no general proof — so far, at least.”
The debate will probably not be settled on theoretical grounds. “The ball is really in the hands of our very clever experimental colleagues,” Zakrzewski said.
An international team led by Berkeley scientists is preparing an elaborate lab experiment, although it may take “anywhere between three and infinity years” to complete, depending on funding or unforeseen technical difficulties, said Häffner, who is co-principal investigator with Zhang. The hope is that time crystals will push physics beyond the precise but seemingly imperfect laws of quantum mechanics and lead the way to a grander theory.
“I’m very interested in seeing if I can make a new contribution following Einstein,” Li said. “He said that quantum mechanics is not complete.”

To Build an Ion Ring

In Albert Einstein’s theory of general relativity (the body of laws governing gravity and the large-scale structure of the universe), the dimensions of time and space are woven together into the same fabric, known as space-time. But in quantum mechanics (the laws governing interactions on the subatomic scale), the time dimension is represented in a different way than the three dimensions of space — “a disturbing, aesthetically unpleasant asymmetry,” Zakrzewski said.
The different treatments of time may be one source of incompatibility between general relativity and quantum mechanics, at least one of which must be altered for there to be an all-encompassing theory of quantum gravity (widely viewed as a major goal of theoretical physics). Which concept of time is right?
If time crystals are able to break time symmetry in the same way that conventional crystals break space symmetry, “it tells you that in nature those two quantities seem to have similar properties, and that ultimately should reflect itself in a theory,” Häffner said. This would suggest that quantum mechanics is inadequate, and that a better quantum theory might treat time and space as two threads of the same fabric.
An illustration of the time crystal experiment planned at UC-Berkeley. Electric fields will be used to corral calcium ions into a 100-micron-wide “trap,” where they will form a crystalline ring. The scientists believe a static magnetic field will cause the ring to rotate. Image: Hartmut Häffner
The Berkeley-led team will attempt to build a time crystal by injecting 100 calcium ions into a small chamber surrounded by electrodes. The electric field generated by the electrodes will corral the ions in a “trap” 100 microns wide, or roughly the width of a human hair. The scientists must precisely calibrate the electrodes to smooth out the field. Because like charges repel, the ions will space themselves evenly around the outer edge of the trap, forming a crystalline ring.
At first, the ions will vibrate in an excited state, but diode lasers like those found in DVD players will be used to gradually scatter away their extra kinetic energy. According to the group’s calculations, the ion ring should settle into its ground state when the ions are laser-cooled to around one-billionth of a degree above absolute zero. Access to this temperature regime had long been obstructed by background heat emanating from trap electrodes, but in September, a breakthrough technique for cleaning surface contaminants off electrodes enabled a 100-fold reduction in ion trap background heat. “That’s exactly the factor we need to bring this experiment into reach,” Häffner said.
Next, the researchers will switch on a static magnetic field in the trap, which their theory says should induce the ions to start rotating (and continue doing so indefinitely). If all goes as planned, the ions will cycle around to their starting point at fixed intervals, forming a regularly repeating lattice in time that breaks temporal symmetry.
To see the ring’s rotation, the scientists will zap one of the ions with a laser, effectively tagging it by putting it into a different electronic state than the other 99 ions. It will stay bright (and reveal its new location) when the others are darkened by a second laser.
If the bright ion is circling the ring at a steady rate, then the scientists will have demonstrated, for the first time, that the translational symmetry of time can be broken. “It will really challenge our understanding,” Li said. “But first we need to prove that it does indeed exist.”
Until that happens, some physicists will remain deeply skeptical. “I personally think it’s not possible to detect motion in the ground state,” Bruno said. “They may be able to make a ring of ions in a toroidal trap and do some interesting physics with that, but they will not see their ever-ticking clock as they claim.”
Original story reprinted with permission from Simons Science News, an editorially independent division of SimonsFoundation.org whose mission is to enhance public understanding of science by covering research developments and trends in mathematics and the physical and life sciences.

Thursday, April 25, 2013

Why Atheists Make Better Warriors

Stunning Videos Reveal the true nature of 'supernatural' powers, as a martial artist makes the mistake of believing his own myth.
"It's probably true that certain human accomplishments depend upon people's neurotic needs for achievement or their lust for money or power. A lot of art comes from a place of being captivated by selfish illusions. And if a person were to permanently dispel the illusion of the self, he might not write great novels or start the next Apple. Buddhahood might be incompatible with being the next Nabokov or Steve Jobs. Luckily, no one has ever had to choose between becoming a great artist or entrepreneur, or the next Buddha." - Sam Harris
Your mind will be active in any case, no matter how much you meditate. The goal is not to be without thought, but to be aware of the character of your experience in each moment and not suffer unnecessarily. Almost all our suffering is the product of our thoughts. We spend nearly every moment of our lives lost in thought, and hostage to the character of those thoughts. You can break this spell, but it takes training just like it takes training to defend yourself against a physical assault.
Sam Harris is best known as a vocal opponent of religious faith. But he is also a student of martial arts and armed self-defense, and a practitioner of daily silent meditation.
In the May issue of The Atlantic, Graeme Wood recounts the experience of learning meditation and Brazilian jiu-jitsu with him. Harris is finishing his next book, Waking Up: Science, Skepticism, Spirituality, about self-transcendence in the absence of religion. Following their encounter, Wood caught up with Harris to discuss violence, faith, and meditation.

Would you rather be attacked by one person with a knife, or several unarmed individuals equally intent on killing you?
Both situations are invitations to a track meet: You want to run. One of my teachers, Mark Mikita, specializes in knife fighting, mostly derived from the Filipino martial arts, and one of his teachers told him: "If you train with me for ten years, and someone pulls a knife on you, and you just turn and run, then your training has been successful." The problems of a knife and multiple attackers are similar, in that they rarely end well for a person who is alone and unarmed.

FROM THE MAGAZINE

Even if you know how to defend yourself against one person, fighting several people is a hugely different situation. You could be a Golden Gloves champion, but while you confront your first attacker, you'll have one or more people taking your flank. Underestimating the gravity of this problem is one of the more dangerous illusions that martial artists acquire. It is true that uncommitted or unsophisticated attackers might approach you serially, and if you have good skills, you might prevail over one at a time. But if you're swarmed by several people at once, it becomes a problem for which no martial art has a solution. Only having a weapon makes you likely to prevail.

Similarly, a knife attack is always a disaster for an unarmed person. Somebody who gets out of 10 years in a maximum-security prison has basically gone to graduate school for shanking people. A person who is seriously intent upon killing you with a knife is not going to attack in the way you've learned to expect from martial-arts class. Most martial artists have done knife-defense drills where their partners attack in a very stereotyped way--lunging forward with a single thrust and leaving their arm out there so that you can perform the technique. This is just a pantomime of combat, and it is dangerously misleading.
The reality of a knife attack is that even if you stop 50% of the thrusts and slashes, you will be taking damage with every other move. And getting cut with a knife of any size is physiologically horrible in a way that few people realize. It is arguably worse than getting shot. A bullet is a tiny ball of metal that may or may not hit something vital. Unless you're shooting someone in the brainstem or heart, you're basically waiting for blood loss to incapacitate him. A knife--especially in the hands of someone who knows how to use it--cuts through everything it touches, and it's not going to malfunction or run out of bullets. It is also much harder to wrestle a blade out of a person's hand, because you can grab a gun without getting your fingers cut off.

A book called Put 'Em Down, Take 'Em Out!: Knife Fighting Techniques From Folsom Prison is one of the scariest things I've ever read,

Sunday, April 21, 2013

Heading for a Resource-Shock World

From "The Coming Global Explosion"
by 
 ENVIRONMENT  Tom Dispatch / By Michael T. Klare

Entering a Resource-Shock World 
How Resource Scarcity and Climate Change Could Produce a Global Explosion 
By Michael T. Klare
Brace yourself. You may not be able to tell yet, but according to global experts and the U.S. intelligence community, the earth is already shifting under you.  Whether you know it or not, you’re on a new planet, a resource-shock world of a sort humanity has never before experienced.
Two nightmare scenarios -- a global scarcity of vital resources and the onset of extreme climate change -- are already beginning to converge and in the coming decades are likely to produce a tidal wave of unrest, rebellion, competition, and conflict.  Just what this tsunami of disaster will look like may, as yet, be hard to discern, but experts warn of “water wars” over contested river systems, global food riots sparked by soaring prices for life’s basics, mass migrations of climate refugees (with resulting anti-migrant violence), and the breakdown of social order or the collapse of states.  At first, such mayhem is likely to arise largely in Africa, Central Asia, and other areas of the underdeveloped South, but in timeall regions of the planet will be affected.
To appreciate the power of this encroaching catastrophe, it’s necessary to examine each of the forces that are combining to produce this future cataclysm.
Resource Shortages and Resource Wars

Sunday, April 14, 2013

Veronica Mars Movie Raises $5.7-million on Kickstarter


They broke all the KickStarter Records, most donors (over 90,000), most money for a movie project. Most radical fun. Can't wait for the movie in 2014!

Veronica Mars (AKA Kristen Bell) ROCKS!

Monday, March 25, 2013

On the Brain

These TED Talks explain how your brain works with various phenomena. The thing is I've been exposed to these 'tricks' of the mind, and always understood the 'flaws' in human consciousness that cause cognitive illusions, and so I've learned to always check my own couscous perceptions whenever reasonably possible.

As I grew up, I found my mother's descriptions of events to be highly 'interpretative'. That is, she would tell people what she experienced from her personal emotional point of view, rather than what happened from an objective scientific point of view.

Later, after growing up to 'adult'-hood, and realizing all the cognitive flaws of my child-mind, such as the SIZE of objects relative to my body, my mother would often recount my childhood events, experiences we both shared, but with significant differences. I never trusted my mother's emotionally skewed account of things in the present, but unable to verify my child-mind's experience, I gave her the benefit of the doubt. I preferred her old adult memory to my own childhood memory of the events. Then I found a way to verify my own memory, with video and pictures, and now I don't trust my mother again.

The issue is this, my mother doesn't "LIE" in that sense of deceiving others. She is only deceiving herself (unconsciously), but if you believe her she will also deceive you. And further, if you choose NOT to believe my mother on anything then you will also lose good data, because if you think about it, she's only being self-deceptive about things she cares about, in one way or another. So, she tends to be a fairly good reporter of things she has no opinion about.

The trick then, is to understand what she cares about, and how she cares, in short to understand her state of mind. Which is a very scary proposal for me, because mom isn't rational, and as such mirroring her state of mind is dangerous, and could cause insanity, but it is necessary to be able to comunicate. And since we have no real choice about caring about our mothers, and we must communicate to survive, much less to fulfill our moral social lives, then we are all bound to be a bit irrational, a little insane.

Ultimately, I've found in my life that I'm TOO rational to communicate well with most human beings. My perceptions are generally more objective and accurate than others. I contribute this to the fact that I play sports and was well trained in mathematics and philosophy, and love science. Sometimes, I still am effected by irrational states of mind, when I'm asleep, or somewhere between conscious and unconsciousness. I value accurate information, I want to make good decisions to be successful, I don't take drugs for this reason.

As it turns out, communicating with others, understanding their state of mind, and understanding their motivations are more critical to 'success' in a social environment than anything else, even objective evidence. This has been the hardest thing for me to accept, and it has made me question my decisions. It turns out that taking drugs, like alcohol, can deaden the parts of the brain that control our rational thinking, and thus release our irrational 'id' or lizard brain. If you do this often enough you learn how your 'id' works and this gives you insight into others.

What most people will find 'surprising' about the TED talks about our irrational brain, I find common sense, and thus unremarkable, and that is surprising. It is remarkable that I don't understand people's flawed perceptions to such an extent that I fail to be able to predict their wonder when exposed to the flaws. I need to learn to trust my perceptions and my instincts to become successful, but it is my questioning of my emotional states and perceptions that makes me valuable. It is a conundrum.

Sunday, October 07, 2012

Hexaflexagons


When people ask me how we can have 9 Dimensions rather than three+time,
I will answer: "It's just like a spiral hexaflexagon."