Mountaintop Observatory sees Gamma Rays from exotic Milky Way object

The High-Altitude Water Cherenkov Gamma-Ray Observatory (HAWC) is a detector designed to look at gamma-ray emission coming from astronomical objects such as supernova remnants, quasars and rotating dense stars called pulsars. Located roughly 13,500 feet above sea level near the Sierra Negra volcano in Mexico, the detector is composed of more than 300 tanks of water, each about 24 feet in diameter. When particles strike the water, they produce a shock wave of blue light called Cherenkov radiation. Special cameras in the tanks detect this light, allowing scientists to determine the origin of incoming gamma rays.
Credit: Jordan Goodman/University of Maryland

Space jets accelerate particles and send a high-energy signal to Earth...

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Common Herbicide compound may Save millions of Lives

UQ’s Dr Mario D. Garcia conducting one of the many experiments involved in the research.
Credit: The University of Queensland

A chemical compound found in common herbicides could help fight hospital-acquired human fungal pathogenic infections, which claim an estimated two million lives per year. A team of international researchers led by The University of Queensland has discovered that the chemical chlorimuron ethyl also targets a range of fungal infections that are potentially fatal to humans, particularly people undergoing treatments which place the immune system under stress.

Dr Luke Guddat, from UQ’s School of Chemistry and Molecular Biosciences, said the finding was very timely, given the growth in drug-resistant infections...

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Boosting the Efficiency of Silicon Solar Cells

Principle of a silicon singlet fission solar cell with incorporated organic crystals. Credit: M. Künsting/HZB

Principle of a silicon singlet fission solar cell with incorporated organic crystals.
Credit: M. Künsting/HZB

A solar cell’s efficiency indicates what percentage of the solar energy radiated into the cell is converted into electrical energy. The theoretical limit for silicon solar cells is 29.3% due to physical material properties. In a new article, researchers describe how this limit can be abolished.

In the journal Materials Horizons, researchers from Helmholtz-Zentrum Berlin (HZB) and international colleagues describe how this limit can be abolished. The trick: they incorporate layers of organic molecules into the solar cell...

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Surprising Chemical Complexity of Saturn’s Rings changing planet’s Upper Atmosphere

During Cassini's 'Grand Finale' plunge into Saturn's innermost ring and upper atmosphere in 2017, the mass spectrometer aboard the probe sampled chemicals at altitudes between Saturn's rings and atmosphere. Credit: NASA

During Cassini’s ‘Grand Finale’ plunge into Saturn’s innermost ring and upper atmosphere in 2017, the mass spectrometer aboard the probe sampled chemicals at altitudes between Saturn’s rings and atmosphere.
Credit: NASA

A new study based on data from the final orbits last year of NASA’s Cassini spacecraft shows the rings of Saturn – some of the most visually stupendous objects in the universe – are far more chemically complicated than previously was understood. Political humorist Mark Russell once joked, “The scientific theory I like best is that the rings of Saturn are composed entirely of lost airline luggage.”

Well, there’s no luggage, it turns out...

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