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UK-based Crypto Quantique has announced the launch of what is being claimed as the world’s most advanced security product for IoT devices – with a quantum edge.

The technology behind this solution includes world’s first quantum driven secure chip (QDSC) on silicon which, when combined with cryptographic APIs, provides highly scalable, easy-to-implement and seamless end-to-end security for any connected device.

Quantum computing differs from classical computing in that it has the potential to find patterns and insights based on data which does not exist, rather than finding patterns in vast amounts of existing data. Its potential applications include improving security through quantum physics and enhancements to machine learning and artificial intelligence.

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WASHINGTON — The U.S. Air Force announced on Wednesday it is awarding three contracts collectively worth about $2 billion to Blue Origin, Northrop Grumman Innovation Systems and United Launch Alliance to develop launch system prototypes.

The funding is for the development of competing launch system prototypes geared toward launching national security payloads. Each company will receive an initial award of $181 million.

The Launch Service Agreements are for the development of Blue Origin’s New Glenn, Northrop Grumman’s Omega and ULA’s Vulcan Centaur rockets. The awards are part of cost-sharing arrangements — known as Other Transaction Agreements — that the Air Force is signing with the three companies to ensure it has multiple competitors. The Air Force has committed through 2024 a total of $500 million in OTA funds for Blue Origin, $792 million for Northrop Grumman and $967 million for ULA. SpaceX previously received an LSA award but did not make the cut this time.

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Optical frequency combs can enable ultrafast processes in physics, biology, and chemistry, as well as improve communication and navigation, medical testing, and security. The Nobel Prize in Physics 2005 was awarded to the developers of laser-based precision spectroscopy, including the optical frequency comb technique, and microresonator combs have become an intense focus of research over the past decade.

A major challenge has been how to make such comb sources smaller and more robust and portable. In the past 10 years, major advances have been made in the use of monolithic, chip-based microresonators to produce such combs. While the microresonators generating the are tiny—smaller than a human hair—they have always relied on external lasers that are often much larger, expensive, and power-hungry.

Researchers at Columbia Engineering announced today in Nature that they have built a Kerr frequency comb generator that, for the first time, integrates the together with the , significantly shrinking the system’s size and power requirements. They designed the laser so that half of the laser cavity is based on a semiconductor waveguide section with high optical gain, while the other half is based on waveguides, made of , a very low-loss material. Their results showed that they no longer need to connect separate devices in the lab using fiber—they can now integrate it all on photonic chips that are compact and energy efficient.

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A few factors were taken into consideration. These included security conditions, climatic conditions at that time of year, the existence of potential scientific partners, and what facilities were available.

Senegal has made great strides in astronomy and planetary sciences in recent years. That’s been largely driven by the Senegalese Association for the Promotion of Astronomy, led by Maram Kaire. Some Senegalese researchers are also involved in the African Initiative for Planetary and Space Sciences, which I head up.

And so, NASA focused its efforts in Senegal. It sent 21 teams to the country, and six to Columbia, which had less favorable climatic conditions. One team, composed of Algerian astronomers from the Centre de Recherche en Astrophysique et Géophysique, also attempted to observe the occultation in the south of Algeria.

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A career’s worth of intelligence work for the U.S. Government has taught me one key lesson: national security is a lot like playing a game of chess. You have to anticipate your opponent’s every move in order to remain one step ahead.

Disclosing your strategy will be used against you. But if you recognize certain opportunities, you can win the match.

When I headed the government’s highly sensitive Advanced Aerospace Threat Identification Program (AATIP), I worked with a team to assess whether a particular chess piece — in this case in the form of an unfamiliar aerial technology — was a threat to our side of the chess board.

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Hoping to make up ground in the hotly contested artificial intelligence battleground, Chinese Internet giant Baidu Inc. is releasing a tool that allows businesses to create and deploy AI models without coding skills.

Announced Saturday, EZDL is a “no-code platform to build custom machine learning models,” designed with ease of use and security in mind, the company said.

“EZDL is a service platform that allows users to build custom machine learning models with a drag-and-drop interface,” Yongkang Xie, tech lead of Baidu EZDL, said in a statement. “It takes only four steps to train a deep learning model, built specifically for your unique business needs.”

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Starting today, Google’s Titan Security Keys are now on sale via the Google Store for $50. The kit provides buyers with two security keys, one of which can act as a backup, in case you lose the other.

Titan Security Keys look and function like any other security keys on the market, so don’t expect anything game-changing. But Google’s keys can help you protect your Google, Facebook, or Dropbox accounts from sophisticated phishing attacks.

A security key is a device that essentially adds another step to the account sign-in process. To break in, a hacker would need your password and the physical key, which can sign a digital authentication request to unlock your account.

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“The big problem is that hospitals don’t buy new devices, and they keep using really dangerous ones ad infinitum — until they just stop working,” Corman said.

Corman wants these old, unsecured devices gone from hospitals. The fear is that, beyond freezing systems or hijacking medical records as they did during WannaCry, hackers could also actively manipulate medical equipment to harm patients by, say, administering a lethal dose of medication via an infusion pump. While newer devices aren’t ironclad, they are typically built with more robust security features. So Corman and others are urging health-care providers to scrap old, or “legacy,” equipment and replace it with newer models.

To nudge health-care providers to trade up, he’s put forth an idea for an incentive program akin to “Cash for Clunkers,” the 2009 federal auto-rebate plan that aimed to run gas-guzzling cars off the road. Under that program, which was formally called the Car Allowance Rebate System, people received cash in exchange for turning in fuel-inefficient vehicles, which they could then put toward new, more efficient ones. (The program fizzled after a few months, when it depleted its allotted budget.) Similarly, in this version, health-care providers would be compensated for junking old equipment, and could use the rebates toward the purchase of new devices. Corman said he hasn’t fully worked out the economics, but he believes device makers might be willing to subsidize the program in part, since it would help them move inventory.

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