Creating the next 3D maps of the universe
Scientists have proposed new instruments that would use spectroscopy to decode dark matter, dark energy and cosmic inflation.
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Scientists have proposed new instruments that would use spectroscopy to decode dark matter, dark energy and cosmic inflation.
Scientists in the particle physics community are bringing environmental and climate issues to the table in discussions about future research.
Anton Zeilinger, who received the 2022 Nobel Prize in Physics, pioneered research on quantum teleportation and entanglement swapping. These technologies are instrumental in the success of the Illinois-Express Quantum Network, which recently published a paper outlining its design concepts and implementation. The technologies are also the basis for the quantum devices that generate the network.
Most astronomers trek to the mountaintops to study the stars, but a group of physicists are seeking the secrets of the cosmos with a detector at the bottom of the ocean.
Their analysis combines Dark Energy Survey, South Pole Telescope data to better understand the evolution of universe.
For decades, scientists have tried to find a way to measure the mass of the lightest matter particle known to exist. Three new approaches now have a chance to succeed.
SQMS Center researchers have identified a new contribution to a qubit’s performance by probing and simulating several-atom-thick layers called silicides.
Fermilab selects its 2023 artist for its year-long artist-in-residence program.
A recent report underscores the importance of energy consumption and cost to decisions about future large-scale particle accelerator projects.
A mile underground in South Dakota, construction crews have worked diligently to carve out an extensive network of caverns and tunnels that one day will house a huge neutrino experiment. Their efforts have paid off: With almost 400,000 tons of rock extracted from the earth, the excavation has reached the halfway point.