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Quantum physicists make major nanoscopic advance      (via sciencedaily.com)     Original source 

In a new breakthrough, researchers have solved a problem that has caused quantum researchers headaches for years. The researchers can now control two quantum light sources rather than one. Trivial as it may seem to those uninitiated in quantum, this colossal breakthrough allows researchers to create a phenomenon known as quantum mechanical entanglement. This in turn, opens new doors for companies and others to exploit the technology commercially.

Offbeat: Space Space: Astronomy Space: Astrophysics Space: Structures and Features Space: The Solar System
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Solar System formed from 'poorly mixed cake batter,' isotope research shows      (via sciencedaily.com) 

Earth's potassium arrived by meteoritic delivery service finds new research led by Earth and planetary scientists. Their work shows that some primitive meteorites contain a different mix of potassium isotopes than those found in other, more-chemically processed meteorites. These results can help elucidate the processes that shaped our Solar System and determined the composition of its planets.

Computer Science: Quantum Computers Engineering: Graphene Offbeat: Computers and Math Physics: Quantum Computing
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Scientists observe 'quasiparticles' in classical systems      (via sciencedaily.com) 

Quasiparticles -- long-lived particle-like excitations -- are a cornerstone of quantum physics, with famous examples such as Cooper pairs in superconductivity and, recently, Dirac quasiparticles in graphene. Now, researchers have discovered quasiparticles in a classical system at room temperature: a two-dimensional crystal of particles driven by viscous flow in a microfluidic channel. Coupled by hydrodynamic forces, the particles form stable pairs -- a first example of classical quasiparticles, revealing deep links between quantum and classical dissipative systems.

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NASA's Fermi detects first gamma-ray eclipses from 'spider' star systems      (via sciencedaily.com) 

Scientists have discovered the first gamma-ray eclipses from a special type of binary star system using data from NASA's Fermi Gamma-ray Space Telescope. These so-called spider systems each contain a pulsar -- the superdense, rapidly rotating remains of a star that exploded in a supernova -- that slowly erodes its companion.

Space: Astronomy Space: Astrophysics Space: Cosmology Space: Exploration Space: Structures and Features
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Were galaxies much different in the early universe?      (via sciencedaily.com) 

The most sensitive telescope now searching for radio signals from cosmic dawn, an era around 200 million years after the Big Bang when stars ignited, has doubled its sensitivity, a new paper reports. While not yet detecting this radiation -- the redshifted 21-centimeter line -- they have put new limits on the elemental composition of galaxies during the Epoch of Reionization. Early galaxies seem to be low in metals, fitting the most popular theory of cosmic evolution.

Chemistry: Thermodynamics Computer Science: Quantum Computers Physics: Quantum Computing
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No 'second law of entanglement' after all      (via sciencedaily.com) 

When two microscopic systems are entangled, their properties are linked to each other irrespective of the physical distance between the two. Manipulating this uniquely quantum phenomenon is what allows for quantum cryptography, communication, and computation. While parallels have been drawn between quantum entanglement and the classical physics of heat, new research demonstrates the limits of this comparison. Entanglement is even richer than we have given it credit for.

Space: Astronomy Space: Astrophysics Space: Cosmology Space: Exploration Space: Structures and Features Space: The Solar System
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Darkest view ever of interstellar ice      (via sciencedaily.com)     Original source 

Astronomers used observations from the James Webb Space Telescope (JWST) to achieve the darkest ever view of a dense interstellar cloud. These observations have revealed the composition of a virtual treasure chest of ices from the early universe, providing new insights into the chemical processes of one of the coldest, darkest places in the universe as well as the origins of the molecules that make up planetary atmospheres.

Physics: Quantum Computing
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Physical effect also valid in the quantum world      (via sciencedaily.com) 

Physicists have experimentally proven that an important theorem of statistical physics applies to so-called 'Bose-Einstein condensates.' Their results now make it possible to measure certain properties of the quantum 'superparticles' and deduce system characteristics that would otherwise be difficult to observe.

Space: Astronomy Space: Astrophysics Space: Exploration Space: Structures and Features
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Massive fuel-hungry black holes feed off intergalactic gas      (via sciencedaily.com) 

Research has revealed how supermassive black holes (SMBHs) are feeding off gas clouds which reach them by traveling hundreds of thousands of light years from one galaxy to another.

Physics: Quantum Computing
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Approaching the terahertz regime      (via sciencedaily.com) 

A class of nonvolatile memory devices, called MRAM, based on quantum magnetic materials, can offer a thousandfold performance beyond current state-of-the-art memory devices. The materials known as antiferromagnets were previously demonstrated to store stable memory states, but were difficult to read from. This new study paves an efficient way for reading the memory states, with the potential to do so incredibly quickly too.

Computer Science: General Computer Science: Quantum Computers Physics: Quantum Computing
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Shedding light on quantum photonics      (via sciencedaily.com) 

As buzz grows ever louder over the future of quantum, researchers everywhere are working overtime to discover how best to unlock the promise of super-positioned, entangled, tunneling or otherwise ready-for-primetime quantum particles, the ability of which to occur in two states at once could vastly expand power and efficiency in many applications.

Space: Astronomy Space: Astrophysics Space: Exploration Space: Structures and Features
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Billions of celestial objects revealed in gargantuan survey of the Milky Way      (via sciencedaily.com)     Original source 

Astronomers have released a gargantuan survey of the galactic plane of the Milky Way. The new dataset contains a staggering 3.32 billion celestial objects -- arguably the largest such catalog so far. The data for this unprecedented survey were taken with the Dark Energy Camera.

Space: Exploration Space: Structures and Features Space: The Solar System
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Tumultuous migration on the edge of the Hot Neptune Desert      (via sciencedaily.com) 

A team reveals the eventful migration history of planets bordering the Hot Neptune Desert, these extrasolar planets that orbit very close to their star.

Computer Science: General Computer Science: Quantum Computers Physics: Quantum Computing
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Can you trust your quantum simulator?      (via sciencedaily.com) 

Physicists have developed a protocol to verify the accuracy of quantum experiments.

Computer Science: Quantum Computers Physics: Quantum Computing
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Blast chiller for the quantum world      (via sciencedaily.com) 

The quantum nature of objects visible to the naked eye is currently a much-discussed research question. A team has now demonstrated a new method in the laboratory that could make the quantum properties of macroscopic objects more accessible than before. With the method, the researchers were able to increase the efficiency of an established cooling method by an order of a magnitude.

Space: Astrophysics Space: Structures and Features
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A star's unexpected survival      (via sciencedaily.com) 

Hundreds of millions of light-years away in a distant galaxy, a star orbiting a supermassive black hole is being violently ripped apart under the black hole's immense gravitational pull. As the star is shredded, its remnants are transformed into a stream of debris that rains back down onto the black hole to form a very hot, very bright disk of material swirling around the black hole, called an accretion disc. This phenomenon -- where a star is destroyed by a supermassive black hole and fuels a luminous accretion flare -- is known as a tidal disruption event (TDE), and it is predicted that TDEs occur roughly once every 10,000 to 100,000 years in a given galaxy.

Energy: Alternative Fuels Engineering: Nanotechnology Space: Astrophysics Space: Structures and Features Space: The Solar System
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The world in grains of interstellar dust      (via sciencedaily.com) 

Understanding how dust grains form in interstellar gas could offer significant insights to astronomers and help materials scientists develop useful nanoparticles.

Space: Astrophysics Space: Cosmology Space: Exploration Space: Structures and Features
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Researchers measure size-luminosity relation of galaxies less than a billion years after Big Bang      (via sciencedaily.com) 

A team has studied the relation between galaxy size and luminosity of some of the earliest galaxies in the universe taken by the James Webb Space Telescope, less than a billion years after the Big Bang.

Space: Astrophysics Space: Exploration Space: Structures and Features
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Hubble finds hungry black hole twisting captured star into donut shape      (via sciencedaily.com) 

Black holes are gatherers, not hunters. They lie in wait until a hapless star wanders by. When the star gets close enough, the black hole's gravitational grasp violently rips it apart and sloppily devours its gasses while belching out intense radiation. Astronomers have recorded a star's final moments in detail as it gets gobbled up by a black hole.

Space: Astrophysics Space: Structures and Features Space: The Solar System
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How do rocky planets really form?      (via sciencedaily.com) 

A new theory could explain the origin and properties of systems of rocky super-Earths and their relationship with the terrestrial planets of the solar system.