Physicists discover “secret sauce” behind exotic properties of a new quantum material
New work on superconducting kagome metal will aid design of other unusual quantum materials, with many potential applications.
New work on superconducting kagome metal will aid design of other unusual quantum materials, with many potential applications.
The findings could redefine the kinds of particles that were abundant in the early universe.
Catalog of planet candidates nearly doubles in size during 2020-21.
The discovery could offer a route to smaller, faster electronic devices.
The physician, scientist, and professor has made influential contributions to the Harvard-MIT Program in Health Sciences and Technology since it began 50 years ago.
The new observations record a key crossover from classical to quantum behavior.
“There need to be more building blocks than the ones we know about,” says the particle physicist.
A new study shows it’s theoretically possible. The hypothesis could be tested soon with proposed Venus-bound missions.
The rechargeable battery can be woven and washed, and could provide power for fiber-based electronic devices and sensors.
Mathematical simulations show the new approach may offer faster, cheaper, and more accurate detection, including identifying new variants.
Report led by MIT scientists details a suite of privately-funded missions to hunt for life on Earth's sibling planet.
Marcos Berríos ’06, Christina Birch PhD ’15, and Christopher Williams PhD ’12 make up a third of the 2021 NASA astronaut candidate class.
Electrical engineer and Stanford University professor discusses how computer software can support advanced designs and new functionalities.
Sihao Huang, William Kuhl, Tingyu Li, Giramnah Peña-Alcántara, Sreya Vangara, and Kelly Wu will pursue graduate studies in global affairs at Tsinghua University in Beijing.
Graduate students perform Martinů’s “Piano Trio in D Minor,” originally commissioned for Hayden Library's 1950 dedication.