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New ultrathin lens focuses light into an optical needle

Researchers have created a special flat lens that shapes light into an optical needle—a thin beam that stays tightly focused over a long distance. Combining this lens, which is about 7 microns thick, with optical coherence tomography (OCT) could allow imaging that reaches deeper into tissue while maintaining a sharp focus.

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Calif. city’s police arrest 400 over Independence Day weekend

As crowds in Newport Beach grew, individuals blocked roadways and threw explosive mortars, fireworks and other projectiles at police officers, into densely packed crowds and near children

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South Pole Telescope analysis releases new catalog of more than 7,000 galaxy clusters

Researchers working with data from the South Pole Telescope have released a major catalog of galaxy clusters, giving scientists a powerful new tool for studying how the universe grew and changed over billions of years. The findings are published on the arXiv preprint server.

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Video shows suspects tackle, attack S.C. officer during block party response

Bystander video posted online shows at least one person holding the North Charleston officer down while others punched her and struck her with objects

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Calif. sheriff’s office withheld LPR data-sharing from city within coverage area, grand jury finds

The civil grand jury found that the Placer County Sheriff’s Office blocked the Auburn Police Department from receiving ALPR alerts for approximately two years

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University team proposed retractable, pressurized tunnels for missions to Mars

NASA and China’s national space agency plan to send crewed missions to Mars in the coming decades. Per NASA’s Moon to Mars mission architecture, this will involve using infrastructure established through the Artemis Program to send crews to the red planet sometime in the 2030s or 2040s. Similar to Artemis, these missions will culminate in […]

Evidence of elusive high-energy gravitons in quantum Hall systems

Electrons, negatively charged particles, sometimes coordinate their movements in ways that produce certain collective excitations referred to as quasiparticles. One case in which this occurs is the quantum Hall effect, a phenomenon that emerges when electrons are confined to a very thin layer, cooled to temperatures around 0 kelvin and exposed to a very strong […]

Timeline: How the July 7, 2016 Dallas ambush unfolded

What began as a peaceful demonstration ended with five officers killed, several others wounded and a historic SWAT operation

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New Horizons watches the solar wind as it slows down

Where does the solar system end and interstellar space begin? That’s a question scientists have been working to answer using spacecraft traveling beyond the sun’s influence. A team of researchers from the Southwest Research Institute, led by Heather Elliott, is using the Solar Wind Around Pluto (SWAP) instrument aboard New Horizons to track the solar […]

JWST finds the most distant barred galaxy candidate in the early universe

Astronomers using the James Webb Space Telescope have identified what may be the most distant barred spiral galaxy ever discovered, dating to a time less than 1.2 billion years after the Big Bang. The paper outlining its properties was posted to the arXiv preprint server on June 23.

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Metallic rutile oxides break the rules of cooling

Physicists have long puzzled over a strange contradiction inside a family of minerals called rutile oxides. These materials all share the same crystal structure—but while some of them, like titanium dioxide, are firmly insulating, others, like ruthenium dioxide, conduct electricity like a metal. So far, physicists have had little idea of why this happens.

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‘Cosmic wallflowers’ may hold the key to the origin of globular clusters

Astronomers using computer simulations have investigated whether a class of star clusters nicknamed “cosmic wallflowers” could be the long-sought ancestors of the globular clusters we see orbiting galaxies today. Their paper, posted to the arXiv preprint server on June 25, suggests that where a cluster is born and how fast it spins may determine its […]

Researchers break a fundamental rule to create a new concept: Heat that can be directed and ‘programmed’

Normally, a material absorbs and emits heat in a linked way: A surface that absorbs heat well at a certain wavelength and direction will also emit heat in the same way. This fundamental relationship, known as reciprocity, limits the ability to independently control heat absorption and heat emission.

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It’s disturbingly easy to trick AI into seeing aliens, say researchers

Are we alone in the universe? Consider mysterious “extraterrestrial” radio signals. Unexplained gases on other planets. Things mistaken for UFOs.

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Bulk ferromagnetic quasicrystals emerge without rapid quenching, unlocking stable magnetic studies

Ferromagnetism has long been studied in a wide range of periodic crystals and amorphous materials. In quasicrystals (QCs), which possess long-range quasiperiodic order and unconventional rotational symmetries, such as 10-fold symmetry, ferromagnetism remained elusive until recently, when it was finally realized in gold (Au)-based icosahedral QCs. These discoveries establish QCs as a third platform for […]