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Early-universe plasma may have stopped dark photons from heating cosmos

A new paper published in Physical Review Letters reveals that a leading dark matter candidate—the hypothetical “dark photon”—would not have heated the early universe as previously thought. The finding opens a vast region for experimental searches and could change the hunt for dark matter.

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Neptune’s tiny moons tell the story of Triton’s destructive capture

Neptune’s moon and ring system stand out among the giant planets because of the strange imbalance between its one very large moon and its many tiny moons. Its largest moon, Triton, makes up more than 99% of the mass of all satellites orbiting the planet while orbiting retrograde compared with Neptune’s rotation. The predominant theory is that Triton is a captured Kuiper Belt object that caused a major disruption in Neptune’s early moon system. Now, a new study published in Science Advances provides spectroscopic evidence to support this theory.

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Tungsten may suffer more radiation damage in fusion reactors than expected

Fusion reactors, devices that generate energy by fusing light atomic nuclei at extremely high temperatures, could contribute to ongoing efforts aimed at producing electricity more sustainably. The extreme environment inside these devices, however, can damage materials that surround the superheated, electrically charged plasma where the nuclear fusion reaction takes place.

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Suspect arrested in World War II Memorial vandalism in Washington

Melissa L. Farris was arrested for painting the words “Clean hands dirty $” on the monument, and placing bubbles in a fountain

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Man convicted of stabbing Calif. K-9 after pursuit

A Solano County jury found Harvey Edward Harris Jr. guilty of personally inflicting serious injury on a police animal while armed with a knife and evading an officer with willful disregard

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Nonrepeating photonic crystal may enable more tunable, reliable semiconductor lasers

Over the past two decades, photonic-crystal surface-emitting lasers (PCSELs) have shown promise as a type of advanced semiconductor laser useful in defense- and aerospace-related applications. Typically, these devices are made with photonic crystal patterns that repeat across the area of the device. But new research from the lab of electrical and computer engineering professor Kent Choquette has demonstrated a quasi-periodic photonic-crystal surface-emitting laser (QPCSEL). Fabricated with their buried dielectric platform, the group’s device highlights a new avenue for creating tunable, more reliable semiconductor lasers. Their findings appear in Applied Physics Letters.

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‘Starwashing’: How space companies use the greenwashing playbook while causing environmental damage

From launchpads to low Earth orbit and beyond, space companies and their affiliates are deploying a familiar marketing tactic—with a new twist. In a space economy projected to reach US$1.8 trillion by 2035, they sell space exploration narratives by appealing to a desire to expand humankind beyond Earth—while downplaying or omitting the negative repercussions for Earth and the space environment. Welcome to the age of starwashing.

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Airborne observatory improves views of solar corona during cloud-covered eclipse

Using unique equipment installed on NASA’s WB-57 aircraft flying above heavy clouds off the coast of Iceland, a Southwest Research Institute-led team successfully observed a total solar eclipse on Wednesday. The high-altitude jet followed the moon’s shadow at 50,000 feet (15,000 meters) to take measurements of the solar corona in nine different wavelengths, ranging from visible to infrared light.

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Cell biochemistry beyond membranes: Condensate physics reveals general rules for chemical responses

Basic biology courses teach that cells contain organelles—such as the nucleus, mitochondria and Golgi apparatus—set apart by lipid membranes to get things done. Recent cell biology research has revealed another organizational principle at work in cells across all orders of biology.

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Bound gravitational waves inspired by photonic systems

When one mentions “waves,” we immediately think of a perturbation that propagates. This applies to waves on the shore, sound waves in the air or electromagnetic waves that we use to transmit information via optical fibers. The same idea of propagating perturbations applies to gravitational waves (GWs), which entered the mainstream media a decade ago after their first direct detection. These are perturbations of the elastic fabric that we are all embedded in, called spacetime.

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Luigi Mangione pleads guilty to federal stalking charges in the killing of UnitedHealthcare CEO

Mangione admitted in court that he stalked, shot and killed CEO Brian Thompson; prosecutors plan to seek a life prison term

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Constipation is common in astronauts—blood tests provide new answers

For astronauts in space, constipation is a well-known problem. But why this happens has long been unclear. Now, a new study from the University of Copenhagen in collaboration with NASA provides an idea of what happens in the stomach without the influence of gravity.

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Mysterious Cygnus Bubble may trace back to microquasar, astronomers suggest

Astronomers have proposed a new explanation for the mysterious Cygnus Bubble, a vast cloud of ultra-high-energy gamma rays stretching thousands of light-years across the sky. While the bubble has generally been linked to the Cygnus X star-forming region, the new study argues that a microquasar more naturally explains its highest-energy emission. The results were published in a paper in The Astrophysical Journal Letters on July 21.

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Controlling the rotation direction of light without complex new materials

A new pathway has opened for controlling the rotation direction of light simply by changing how molecules are arranged, without having to synthesize complex new materials. Circularly polarized light is a special form of light that travels while rotating like a pinwheel to the left or right. Because different rotation directions can carry different information, it is drawing attention as a key light source for next-generation displays, optical communications and security technologies.

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BWC: Ky. response team uses armored SUV to bring deputies, civilian under fire to safety

The deputies and civilian were pinned down for several hours until state police’s Special Response Team rescued them with the help of an armored Chevrolet Suburban High Country

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