Stanford’s latest particle accelerator is smaller than a grain of rice (video)

Stanford reveals breakthrough particle accelerator that's smaller than a grain of rice

Particle accelerators range in size from massive to compact, but researchers from Stanford University and the SLAC National Accelerator Laboratory have created one that’s downright miniscule. What you see above is a specially patterned glass chip that’s smaller than a grain of rice, but unlike a broken Coke bottle, it’s capable of accelerating electrons at a rate that’s roughly 10 times greater than the SLAC linear accelerator. Taken to its full potential, researchers envision the ability to match the accelerating power of the 2-mile long SLAC linear accelerator with a system that spans just 100 feet.

For a rough understanding of how this chip works, imagine electrons that are brought up to near-light speed and then concentrated into a tiny channel within the glass chip that measures just a half-micron tall. From there, infrared laser light interacts with patterned, nanoscale ridges within the channel to create an electrical field that boosts the energy of the electrons.

In the initial demonstration, researchers were able to create an energy increase of 300 million electronvolts per meter, but their ultimate goal is to more than triple that. Curiously enough, these numbers aren’t even that crazy. For example, researchers at the University of Texas at Austin were able to accelerate electrons to 2 billion electronvolts over an inch with a technique known as laser-plasma acceleration, which involves firing a laser into a puff of gas. Even if Stanford’s chip-based approach doesn’t carry the same shock and awe, it seems the researchers are banking on its ability to scale over greater distances. Now if we can just talk them into strapping those lasers onto a few sharks, we’ll really be in business.

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Google Street View lets you stroll around CERN, no doctorate required

Street View now lets you stroll around CERN, no physics doctorate required

Previously, free rein to explore the labyrinthine laboratory that is CERN has been granted only to the lucky, or those with four degrees and an aptitude for finding theoretical particles. That changes today, however, as anyone can now explore the home of the Large Hadron Collider in Geneva, Switzerland through Google Street View. All the imagery was captured back in 2011, but it’s finally been stitched together, allowing you to wander freely around the site of the famous particle accelerator and learn a little about its experiments. Hit up Google Views to begin your personal guided tour, and let us know if you spot this Higgs fellow everyone’s so keen on finding.

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Source: Google Views, Google Europe Blog

Daily Roundup: HTC kicks off $1 billion rebrand, Elon Musk’s Hyperloop, Liquid E2 review, and more!

DNP The Daily RoundUp

You might say the day is never really done in consumer technology news. Your workday, however, hopefully draws to a close at some point. This is the Daily Roundup on Engadget, a quick peek back at the top headlines for the past 24 hours — all handpicked by the editors here at the site. Click on through the break, and enjoy.

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Primed: The smashing science behind particle accelerators

Primed goes in-depth on the technobabble you hear on Engadget every day — we dig deep into each topic’s history and how it benefits our lives. You can follow the series here. Looking to suggest a piece of technology for us to break down? Drop us a line at primed *at* engadget *dawt* com.

The smashing science behind particle accelerators

Long before the Large Hadron Collider (LHC) could smash its first atoms, researchers manning the Tevatron collider at Fermilab, in a quiet suburb 40 miles west of Chicago, raced to find evidence that the Higgs boson exists. After roughly three decades of service, the Tevatron shut down for good in late 2011, dealing the city of Batavia’s largest employer a significant blow. Less than 18 months later, the LHC (the Tevatron’s technological successor) also went offline – albeit temporarily. Only four years after recording its first proton collisions, the team at CERN is already scrambling to upgrade the staggering LHC, which lies under parts of no less than five cities in both France and Switzerland. With the world’s largest particle colliders smashing a whole lot of nothing together for the next two years at least, the field of high-energy physics research is starting to look resource-starved. Of course, many might ask why exactly we need giant atom smashers like this, or even how they work. It turns out that first part is quite a bit easier to answer than the second.

During the last several decades, particle accelerators have revealed the existence of elementary particles such as quarks, led to the discovery of antimatter and generally helped us unlock the mysteries of the universe. And once they were done splitting atoms and probing the darkest corners of theoretical physics, accelerators often led to breakthroughs in medical imaging and cancer research. So, as massive colliders seem ready to land on the endangered species list, it seems as good a time as any to explain what a particle collider is, how it works and what we as a society have to gain from the research.

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Distro Issue 102: Demystifying the science behind particle accelerators

Distro Issue 102 Demystifying the science behind particle accelerators

If you’ve yet to read up on particle accelerators because the thought of deep diving into science sounds terrifying, fret not friends. In the latest issue of our weekly, Terrence O’Brien steps inside the offers a crash course on the matter as the race towards the elusive Higgs boson surges on. As far as reviews go, we spend some quality time with the homegrown Moto X and HTC’s One mini to see just how the pair of handsets holds up under pressure. Eyes-On peeks at some comfy cans, Recommended Reading recounts how Curiosity became a full-fledged astronaut and Forum is all about Google. Grab a tasty beverage and settle into to your favorite nook because the new edition awaits via the usual repositories below.

Distro Issue 102 PDF
Distro in the iTunes App Store
Distro in the Google Play Store

Distro in the Windows Store
Distro APK (for sideloading)
Like Distro on Facebook
Follow Distro on Twitter

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Source: iTunes, Google Play, Windows Store

Visualized: this is where the Higgs Boson was discovered

Visualized this is where the Higgs Boson was discovered

It’s not everyday you get to tour CERN, the international particle physics research facility that spans the border of both France and Switzerland. It’s even more rare to go down into the sprawling facility’s tunnels to see an inactive and under repair Large Hadron Collider — currently, the world’s most powerful particle accelerator. But that’s just what we did this past week, as we spent some quality time with CERN’s physicists and visited the dormant LHC, as well as two of its detectors: ALICE and CMS (pictured above). There’ll be much more to come from our trip to CERN, so stay tuned. But for now feast your eyes on the birthplace of the Higgs Boson discovery.

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Large Hadron Collider stops for two years of tune-ups, goes out on a high note (video)

Large Hadron Collider goes silent for two years of repairs and retrofits

We’ve long known that the Large Hadron Collider would need to take a break, but that doesn’t take the edge off of the moment itself: as of Valentine’s Day, the particle accelerator has conducted its last test for the next two years. The giant research ring will undergo sweeping repairs and upgrades that should should give it the superconducting connectors needed to hit the originally planned 14TeV of combined collision energy, versus the 8TeV it’s been limited to almost since the beginning. CERN’s machine arguably earned the downtime. After a rough start, it went on to produce rafts of collision data and healthy evidence of the elusive Higgs boson. If you’re still down, think of the hiatus as doing us a favor — it postpones any world-ending disasters until around 2015.

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Via: Ars Technica

Source: CERN

Rovio and CERN teaming up on education: hopefully the Angry Birds help us this time

Rovio and CERN teaming up on education hopefully the Angry Birds help us this time

The last time CERN and an angry bird met, it didn’t end so well: the Large Hadron Collider overheated after a feathered creature reportedly dropped its breakfast on outdoor machinery. Things should go much more smoothly this time around, with CERN and Rovio partnering on an educational initiative that will be unveiled in full at the Frankfurt Book Fair on October 12th. Although the two are shy on just what’s entailed beyond the presence of some Angry Birds material at the event, the union will mark the start of Rovio’s learning brand and likely represent more in the long run than another Angry Birds Space tie-in. We’re mostly wondering if subatomic physics research will explain why we still can’t three-star some levels in a physics-based game.

Continue reading Rovio and CERN teaming up on education: hopefully the Angry Birds help us this time

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Rovio and CERN teaming up on education: hopefully the Angry Birds help us this time originally appeared on Engadget on Thu, 11 Oct 2012 08:27:00 EDT. Please see our terms for use of feeds.

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CERN confirms existence of new particle consistent with Higgs boson (video)

CERN confirms existence of new particle consistent with Higgs boson

Physics’ big announcement had more in common with a leaky product launch than the serious business of re-writing the science books. But slack asset management aside, it’s official: a new boson has been observed with a standard deviation of 5 (confidence of 99.9%). The highly anticipated announcement came this morning direct from CERN’s press conference (via ICHEP in Melbourne,) and is the result of an intense, ongoing search for the elusive particle. The observation is of a boson particle with a mass of 125.3 ± 0.6 GeV, at a significance of 4.9 sigma. Joe Incandela — giving the presentation — said that this is “In agreement with the standard model at 95% confidence range.” The boson is the heaviest ever found, and although this is still a preliminary result, it’s by far the strongest case yet for the existence of the elusive Higgs.

The sought-after particle is essential for supporting the current understanding of sub-atomic world, and its bearing on nuclear, and electromagnetic interactions. The next stage will be to determine the exact characteristics of the new particle and whether it matches the expectations of the Higgs, or is it in fact something more “exotic.” This part will take much more time, but for now, a (very) small, but important piece of the puzzle has been found.

Update: We’re sure you’ve got many questions, and CERN apparently anticipated this. Check out the more coverage link for a helpful FAQ about everything Higgs.

[Image credit: CERN]

Continue reading CERN confirms existence of new particle consistent with Higgs boson (video)

CERN confirms existence of new particle consistent with Higgs boson (video) originally appeared on Engadget on Wed, 04 Jul 2012 03:44:00 EDT. Please see our terms for use of feeds.

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CERN update on its search for Higgs boson starts at 3AM ET (video)

The cat would appear to be out of the bag, but if you must find out about the status of the Higgs boson search ASAP, check the video stream (embedded after the break) as CERN scientists reveal whatever it is they’ve found. The webcast is scheduled to kick off at 2:55AM ET, as a prelude to this year’s ICHEP particle physics conference in Melbourne. Whenever the announcement comes we’ll be sure to let you know, check the links below for more information.

Update: So yeah, they’ve found a new particle “consistent with Higgs boson,” check out all the details here.

Continue reading CERN update on its search for Higgs boson starts at 3AM ET (video)

CERN update on its search for Higgs boson starts at 3AM ET (video) originally appeared on Engadget on Wed, 04 Jul 2012 02:39:00 EDT. Please see our terms for use of feeds.

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