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Archive for the ‘mobile phones’ category: Page 211

Jun 1, 2016

Solid-state physics: Probing the geometry of energy bands

Posted by in categories: computing, mobile phones, particle physics, quantum physics

Scientists at Ludwig-Maximilians-Universitaet (LMU) in Munich and the Max Planck Institute for Quantum Optics (MPQ) have devised a new interferometer to probe the geometry of band structures.

The geometry and topology of electronic states in solids play a central role in a wide range of modern condensed-matter systems, including graphene and topological insulators. However, experimentally accessing this information has proven to be challenging, especially when the bands are not well isolated from one another. As reported by Tracy Li et al. in last week’s issue of Science (Science, May 27, 2016, DOI: 10.1126/science.aad5812), an international team of researchers led by Professor Immanuel Bloch and Dr. Ulrich Schneider at LMU Munich and the Max Planck Institute of Quantum Optics has devised a straightforward method with which to probe band geometry using ultracold atoms in an optical lattice. Their method, which combines the controlled transport of atoms through the energy bands with atom interferometry, is an important step in the endeavor to investigate geometric and topological phenomena in synthetic band structures.

A wide array of fundamental issues in condensed-matter physics, such as why some materials are insulators while others are metals, can be understood simply by examining the energies of the material’s constituent electrons. Indeed, band theory, which describes these electron energies, was one of the earliest triumphs of quantum mechanics, and has driven many of the technological advances of our time, from the computer chips in our laptops to the liquid-crystal displays on our smartphones. We now know, however, that traditional band theory is incomplete.

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Jun 1, 2016

Samsung’s new 512GB SSD is smaller than a postage stamp

Posted by in categories: computing, electronics, mobile phones

Storage in your laptop or smartphone is a compromise between volume, access speed and physical size. But, the industry’s competition to shrink them while boosting their specifications is fierce. A few months after shipping a 16TB solid-state drive, Samsung has announced a fast, efficient 512GB SSD that’s half the size of a postage stamp.

Samsung’s press release claims that the drive is the first mass-produced 512GB SSD with non-volatile memory express (NVMe), a host-controller interface with a streamlined register for speed, in a single package. Unlike other hard drives in multi-chip packages (MCP), Samsung’s new drive is organized in a ball grid array into a collected unit, making it simpler to fit in and connect to other parts in the device. This makes the drive ideal for the ultra-slim notebook PC market, where space and weight are at a premium.

A senior Samsung VP said in a press release that the tiny drive triples the performance of a typical SATA SSD. Its read/write speeds of up to 1,500MB/s and 900MB/s, respectively, mean you could transfer a 5GB HD video in 3 seconds. Samsung will start selling the drive in June in 512GB, 256GB and 128GB models.

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Jun 1, 2016

Researchers create high-speed electronics for your skin

Posted by in categories: biotech/medical, electronics, habitats, internet, mobile phones, wearables

Make no mistake, today’s wearables are clever pieces of kit. But they can be bulky and restricted by the devices they must be tethered to. This has led engineers to create thinner and more powerful pieces of wearable technology that can be applied directly to the skin. Now, researchers at the University of Wisconsin-Madison, led by Zhenqiang “Jack” Ma, have developed “the world’s fastest stretchable, wearable integrated circuits,” that could let hospitals apply a temporary tattoo and remove the need for wires and clips.

With its snake-like shape, the new platform supports frequencies in the .3 gigahertz to 300 gigahertz range. This falls in what is set to become the 5G standard. For a mobile phone, 5G enables faster speeds and greater coverage, but with epidermal electronics, engineers have discussed the possibility that wearers could transmit their vitals to a doctor without having to leave their home.

While the idea isn’t unique, the integrated circuits created by Ma and his team have a much smaller footprint than those developed by other researchers. Earlier transmission lines can measure up to 640 micrometers (or .64 millimeters), but UW–Madison’s solution is just 25 micrometers (or .025 millimeters) thick. The Air Force Office of Scientific Research also supports Ma’s research, suggesting that his wearable breakthroughs may help pilots of the future.

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May 31, 2016

For $20M, These Israeli Hackers Will Spy On Any Phone On The Planet

Posted by in categories: mobile phones, surveillance

The latest surveillance tech from Israel “will open a new era in data interception,” says the CEO of profitable but troubled snoop supplier Ability. It’s sitting on the “golden key of surveillance” with a $20M product.

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May 28, 2016

Mind Over Matter

Posted by in categories: augmented reality, mobile phones, virtual reality

Soon in the future, we will not need smartphones, or AR/ VR headsets, and other devices with BMI technology.


Tom Shippey reviews “The God Wave” by Patrick Hemstreet.

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May 27, 2016

The Future of Humanity’s Food Supply Is in the Hands of AI

Posted by in categories: biotech/medical, computing, food, health, information science, mobile phones, robotics/AI, satellites

Perhaps it’s serendipitous, then, that the machines have finally arrived. Truly smart, truly impressive robots and machine learning algorithms that may help usher in a new Green Revolution to keep humans fed on an increasingly mercurial planet. Think satellites that automatically detect drought patterns, tractors that eyeball plants and kill the sick ones, and an AI-powered smartphone app that can tell a farmer what disease has crippled their crop.

Forget scarecrows. The future of agriculture is in the hands of the machines.

A Digital Green Thumb

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May 27, 2016

Project Goa Will Bring Virtual Reality To Any Smartphone

Posted by in categories: mobile phones, virtual reality

And it’s not made of cardboard.

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May 26, 2016

Apple’s flirtation with buying HBO parent hints at content ambitions

Posted by in categories: augmented reality, business, media & arts, mobile phones, singularity, virtual reality

While Amazon, Google, and Microsoft are moving forward with nextgen technologies such as VR & AR, QC, bio & nano technologies, etc used to advance areas such as Singularity and longevity.; Apples going bigger in the entertainment and media space.


Even if Apple never made an actual move to buy Time Warner, a tentative approach shows that the iPhone maker is serious about getting into media content.

Eddy Cue, who’s in charge of iTunes and Apple Music, brought up the idea of a possible deal with Time Warner corporate strategy head Olaf Olafsson in a meeting late last year, according to a person familiar with the situation. While the two never started negotiations, Time Warner, which owns HBO and the Warner Brothers studio, is on the top of the list of media companies Apple would buy should it eventually commit to the content business, the person said.

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May 26, 2016

Force-feeling phone: Software lets mobile devices sense pressure

Posted by in categories: media & arts, mobile phones

Temporary concept; however, those first alerts (aka help me; I fallen and can’t get up) already covers this plus with the direction we’re going with BMI in the next 5 years this will not be needed.


What if you could dial 911 by squeezing your smartphone in a certain pattern in your palm? A different pattern might turn the music on or flip a page on the screen.

New software developed by University of Michigan engineers and inspired, in part, by a Batman movie, could give any smartphone the capacity to sense force or pressure on its screen or body. ForcePhone offers new ways for people to command their mobile devices.

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May 25, 2016

High-power, diffraction-free femtosecond vortex for laser materials processing

Posted by in categories: computing, electronics, mobile phones

Non-diffracting Bessel vortex beams exhibit diverse propagation regimes in glass that can be observed with a novel imaging strategy.

High-power femtosecond pulses have become a key tool in processing of transparent materials (e.g., glass and sapphire) for the present and the next generation of consumer electronics.1 Associated major industrial challenges include high-quality and high-speed cutting of screen glass for smartphones, camera windows, or drilling of through-vias (vertical interconnect access) in interposers for the circuitry of 3D electronic chips. Ultrafast laser pulses (on picosecond or femtosecond timescales) allow for structuring transparent materials with high levels of accuracy. When the laser pulses propagate into the transparent dielectrics, they usually undergo high distortions.2 These distortions arise because of the nonlinear Kerr self-focusing effect and because of the interaction of the pulse with the plasma, which the pulses generate in the material. The propagation is therefore highly nonlinear and prevents uniform energy deposition along the beam propagation.

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