from the world's big
Single-atom data storage has just been figured out
Most basic form of data, meet most basic form of matter.
- Scientists have figured out how to store binary data in single atoms
- Our technological ambitions require this kind of storage breakthrough
- The new study may herald the start of a new age in computing
You've probably noticed that our appetite for storing data is ravenous. Just three or four years ago, we thought a terabyte of storage space was ridiculously capacious. Now, multi-terabyte storage is an everyday thing. And it's not just the data we want to stash away that we're having trouble handling. It's also the bits coursing through our processors and the power those straining processors require. We're reaching the limits of our hardware, so only a breakthrough in efficiency that packs data into a much tinier form than it currently inhabits could break through the wall we've been rapidly approaching.
Consider this. The essential smallest building block of data is a binary bit, a simple two-way switch set to either 0 or 1. (Eight bits equal a byte, and strings of bytes represent some mathematical value or other.) The smallest physical thing in the universe is the atom. Could we possibly store a bit on an atom? Scientists from the Radboud University in the Netherlands have just published research that presents how it can be done.
"Computers have reached fundamental limitations as to how much better they can get, creating a huge demand in materials research for alternatives. Modern computers use a lot of electricity, currently demanding more than 5 percent of the world's electricity. Fundamental science says we can gain a lot more in energy efficiency. We are focusing on a very basic component of modern computers: a bit of memory. We use atoms, because they are the smallest unit of matter and also enable us to further understand the fundamental science behind their behavior. Our current question: how can we store information within a single atom and how stable can we make that piece of information?" — Brian Kiraly, first author of the new research
The battle against constant spinning
An especially vexing problem is coercing single atoms into resting in a binary — 0 or 1 — state, because atoms want to spin. "What defines a permanent magnet is that it has a north and a south pole, which remains in the same orientation", according to co-author Alexander Khajetoorians, "But when you get down to a single atom, the north and south pole of the atom start to flip and do not know what direction they should point, as they become extremely sensitive to their surroundings. If you want a magnetic atom to hold information, it cannot flip."
Orbiting a solution
The electrons in a magnetized atom orbit its nucleus. They also spin on their own axes, much like the Earth spins as it orbits around the sun. The rate at which they spin is called their "spin angular momentum" and it produces the atom's magnetic charge. Electrons that share a similar spin angle momentum travel together around the nucleus in bands, called "orbitals." The further away they are from nucleus, the higher the electrons' spin angular momentum and the greater the charge each orbital produces. The speed at which each orbital group goes around the nucleus is called its "orbital angular momentum."
Previous efforts to use magnetized atoms as storage have focused on the spin angular momentum, such as the Swiss team from Ecole Polytechnique Federale de Lausanne who announced in early September that over the last couple of years they'd gotten magnetized atoms of holmium to stay put, but only in extreme cold up to 45 Kelvin. (That's a chilling -233.15 Celsius, though it counts as hot to atoms.)
The Radboud researchers took another tack. "Instead of this spin angular momentum, which previous researchers have used, we figured out a way to make an energy difference between a few of the orbitals of the cobalt atom and now use the orbital angular momentum for our atomic memory" says Khajetoorians. "This has a much bigger energy barrier and might be viable to make the single atom memory stable at room temperature."
"When we first conducted the experiment and saw this binary switching, we weren't sure what was going on," recalls Khajetoorians. "In a beautiful collaboration with theorists from Radboud University, Misha Katsnelson and Sasha Rudenko, we were able to point out that we were observing the atom's orbital moment and had created a new memory [medium]." It's still a magnet with spinning electrons, but now with an observable binary switch: Its orbitals.
It's also worth noting that part of what allowed the Radboud team to get a clear view of what could be done was their decision to use Cobalt atoms against a substrate of semiconducting black phosphorus: A scanning tunneling microscope allowed them to "see" individual Cobalt atoms against the phosphorus background to gauge the binary behavior in their orbitals.
There's no hardware yet that can take advantage of the researchers' findings. Still, it's exciting. As Khajetoorians concludes, "What this work means is that, if we could construct a real hard drive from all these atoms — and we are still a long way from that — you could store thousands of times more information."
Sallie Krawcheck and Bob Kulhan will be talking money, jobs, and how the pandemic will disproportionally affect women's finances.
How can we promote the creation of new neurons - and why is it so important?
- Neurogenesis, the birth of neurons from stem cells, happens mostly before we are born - as we are formed in the womb, we are generating most of what we need after birth.
- After birth, neurogenesis is still possible in two parts of the brain: the olfactory bulb (which is responsible for our sense of smell) and the hippocampus (which is responsible for memory, spatial navigation, and emotional processing).
- Research from the 1960s proves creating new neurons as adults is possible, and modern-day research explains how (and why) we should promote new neuron growth.
Two parts of the brain can continue growing through neurogenesis<img type="lazy-image" data-runner-src="https://assets.rebelmouse.io/eyJhbGciOiJIUzI1NiIsInR5cCI6IkpXVCJ9.eyJpbWFnZSI6Imh0dHBzOi8vYXNzZXRzLnJibC5tcy8yMjkyMzk2NS9vcmlnaW4uanBnIiwiZXhwaXJlc19hdCI6MTYwOTAwODc1MH0.4GDLlZmkwuD0-pJ0s0UWcUoYXMy95a-AM61a_QAlAeA/img.jpg?width=980" id="2e77e" class="rm-shortcode" data-rm-shortcode-id="4e23499fdf3b2185533979083fd02db7" data-rm-shortcode-name="rebelmouse-image" alt="brain made of twigs and plants concept of neurogenesis" />
Neurogenesis is still possible well into adulthood in two very important parts of the human brain.
Image by EtiAmmos on Shutterstock<p>Although most people are aware that aging or bad habits such as heavy alcohol use can contribute to the deterioration of our brains, not many of us give thought to how we can generate new brain cells.</p><p>Neurogenesis, the birth of neurons from stem cells, happens mostly before we are born - as we are formed in the womb, we are generating most of what we need after birth. </p><p><strong>After birth, however, neurogenesis is still possible in two parts of the brain:</strong></p><ul><li>The olfactory bulb, which is a structure of the forebrain that's responsible for our sense of smell. </li><li>The hippocampus, which is a structure of the brain located within the temporal lobe (just above your ears) - this area is important for learning, memory, regulation, of emotions and spatial navigation. </li></ul><p>Of course, when this information first came to light <a href="https://www.ncbi.nlm.nih.gov/pubmed/13860748" target="_blank">back in the 1960s</a>, the next natural question was: How do we promote neurogenesis in those areas where it's still possible? </p><p>Researchers today believe there are activities you can do (some of them may be things you already do on a daily basis) that can promote neurogenesis in your brain. </p><p><strong>Why is it important to promote the growth of new neurons in adulthood?</strong></p><p>We produce an estimated 700 million neurons per day in the hippocampus - this means by the time we reach the age of 50, we will have exchanged the neurons we were born within that area of the brain with new (adult-generated) neurons. </p><p>If we don't promote this exchange with the growth of new neurons, we may block certain abilities these new neurons help us with (such as keeping our memory sharp, for example). </p>
4 ways to promote neurogenesis in your brain<img type="lazy-image" data-runner-src="https://assets.rebelmouse.io/eyJhbGciOiJIUzI1NiIsInR5cCI6IkpXVCJ9.eyJpbWFnZSI6Imh0dHBzOi8vYXNzZXRzLnJibC5tcy8yMjkyMzk2Ni9vcmlnaW4uanBnIiwiZXhwaXJlc19hdCI6MTYyNTE3NjczNH0.qyzh_AIUPKfaQIa1QEq4yTNCAAK9nYkH3HFV9vWXwww/img.jpg?width=1245&coordinates=0%2C0%2C0%2C104&height=700" id="64a68" class="rm-shortcode" data-rm-shortcode-id="ee1307fe2dd61ae425552da56db3c5ff" data-rm-shortcode-name="rebelmouse-image" alt="child playing trumpet concept of learning a new instrument neurogenesis" />
Learning a new instrument helps promote neurogenesis.
Photo by DenisProduction.com on Shutterstock<p><strong>Intermittent fasting</strong></p><p><a href="https://law.stanford.edu/2015/01/09/lawandbiosciences-2015-01-09-intermittent-fasting-try-this-at-home-for-brain-health/" target="_blank">A 2015 Stanford study</a> examined the link between <a href="https://www.healthline.com/nutrition/6-ways-to-do-intermittent-fasting#section1" target="_blank">intermittent fasting</a> and neurogenesis. Calorie restriction and fasting can not only increase synaptic plasticity and promote neuron growth but it can also decrease your risk of developing neurodegenerative diseases and boost cognitive function. </p><p><u>Two of the most common ways you can intermittently fast are: </u></p><ul><li>16 hours per day every day - this is a method where you are able to eat for an 8 hour period of the day and fast for 16 hours of the day. Many people begin their "fast" after dinner, pushing their morning meal far enough towards lunch that most of their "off" eating time happens while they are asleep anyways. </li></ul><ul><li>24 hours every week - this is a method where once a week you fast for an entire day. Some people prefer this method because the rest of the week can resume as normal - but for many, this is a difficult way to fast. </li></ul><p><strong>Traveling to new places</strong></p><p>While traveling is something many of us enjoy — scenic routes and new fun experiences — these things also promote neurogenesis while we're on vacation. <a href="https://www.chicagotribune.com/travel/ct-xpm-2014-01-28-sc-trav-0128-travel-mechanic-20140128-story.html" target="_blank">Paul Nussbaum</a>, a clinical neuropsychologist at the University of Pittsburgh, explains that the mental benefits of traveling are very clear.<br></p><p><em>"When you expose your brain to an environment that's novel and complex or new and difficult, the brain literally reacts. Those new and challenging situations cause the brain to sprout dendrites (dangling extensions) which grow the brain's capacity." </em></p><p><strong>Learning a new instrument</strong></p><p>The mental health benefits of music have long been studied, but did you know that learning a new instrument can promote new neuron growth? </p><p>According to <a href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2996135/" target="_blank">this 2010 study</a>, learning to play a new musical instrument is an intense, multisensory motor experience that requires that acquisition and maintenance of skills over your entire lifetime - which of course, promotes the new formation of new neural networks. </p><p>When is the best time to begin learning a new instrument? Childhood, of course. </p><p><em>"Learning to play a new musical instrument in childhood can result in long-lasting changes in brain organization," </em>according to the study mentioned above. </p><p>While learning an instrument in adulthood will also promote neurogenesis, children who began training with a musical instrument before the age of 7 have shown that they have a significantly larger corpus callosum (the area of the brain the allows communication between the two hemispheres of the brain) than many adults. </p><p><strong>Reading novels</strong></p><p>A study from <a href="http://esciencecommons.blogspot.com/2013/12/a-novel-look-at-how-stories-may-change.html" target="_blank">Emory University</a> showed there was an increase in ongoing connectivity in the brains of participants after reading the same (fiction) novel. </p><p>In this study, enhanced brain activity was observed in the region that control physical sensations and movement. Reading a novel, according to lead researcher Gregory Berns, can transport you into the body of the protagonist. </p><p>This ability to shift into another mental state is a vital skill that promotes healthy neurogenesis in those areas of the brain. </p>
The coronavirus pandemic has brought out the perception of selfishness among many.
- Selfish behavior has been analyzed by philosophers and psychologists for centuries.
- New research shows people may be wired for altruistic behavior and get more benefits from it.
- Crisis times tend to increase self-centered acts.
Paul Krugman on the Virtues of Selfishness<div class="rm-shortcode" data-media_id="7ZtAkm6C" data-player_id="FvQKszTI" data-rm-shortcode-id="828936bf6953080e9018307354c0c02b"> <div id="botr_7ZtAkm6C_FvQKszTI_div" class="jwplayer-media" data-jwplayer-video-src="https://content.jwplatform.com/players/7ZtAkm6C-FvQKszTI.js"> <img src="https://cdn.jwplayer.com/thumbs/7ZtAkm6C-1920.jpg" class="jwplayer-media-preview" /> </div> <script src="https://content.jwplatform.com/players/7ZtAkm6C-FvQKszTI.js"></script> </div> The Nobel Prize-winning economist on the virtues of selfishness.
Evolution Is Moving Us Away from Selfishness. But Where Is It Taking ...<div class="rm-shortcode" data-media_id="cyeqmYCb" data-player_id="FvQKszTI" data-rm-shortcode-id="6c5efecb56456e9acc25cf36935b1826"> <div id="botr_cyeqmYCb_FvQKszTI_div" class="jwplayer-media" data-jwplayer-video-src="https://content.jwplatform.com/players/cyeqmYCb-FvQKszTI.js"> <img src="https://cdn.jwplayer.com/thumbs/cyeqmYCb-1920.jpg" class="jwplayer-media-preview" /> </div> <script src="https://content.jwplatform.com/players/cyeqmYCb-FvQKszTI.js"></script> </div>
Exploring Morality and Selfishness in Modern Times<div class="rm-shortcode" data-media_id="02eX1Cag" data-player_id="FvQKszTI" data-rm-shortcode-id="45cc6180db791f32683988fb52faff26"> <div id="botr_02eX1Cag_FvQKszTI_div" class="jwplayer-media" data-jwplayer-video-src="https://content.jwplatform.com/players/02eX1Cag-FvQKszTI.js"> <img src="https://cdn.jwplayer.com/thumbs/02eX1Cag-1920.jpg" class="jwplayer-media-preview" /> </div> <script src="https://content.jwplatform.com/players/02eX1Cag-FvQKszTI.js"></script> </div> Philosopher Peter Singer discusses the state of global ethics.
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