MIT engineers design structures that compute with heat
By leveraging excess heat instead of electricity, microscopic silicon structures could enable more energy-efficient thermal sensing and signal processing.
By leveraging excess heat instead of electricity, microscopic silicon structures could enable more energy-efficient thermal sensing and signal processing.
MIT physicists observed the first clear evidence that quarks create a wake as they speed through quark-gluon plasma, confirming the plasma behaves like a liquid.
MIT physicist shares 400,000-euro award for influential work on “magic-angle” graphene.
The program recognizes outstanding mentorship of graduate students.
MIT physicists say these quasiparticles may explain how superconductivity and magnetism can coexist in certain materials.
In his 10 years at MIT, Loureiro helped illuminate the physics occurring at the center of fusion vacuum chambers and at the edges of the universe.
Professors Ahmad Bahai and Kripa Varanasi, plus seven additional MIT alumni, are honored for highly impactful inventions.
Eleven new professors join the departments of Biology; Brain and Cognitive Sciences; Earth, Atmospheric and Planetary Sciences; Mathematics; and Physics.
X-ray observations reveal surprising features of the dying star’s most energetic environment.
Faculty recognized for the exceptional professional and personal guidance they provide postdocs.
The MIT Quantum Initiative is taking shape, leveraging quantum breakthroughs to drive the future of scientific and technological progress.
The findings could open a route to new forms of higher-temperature superconductors.
Co-founded by Kanav Setia and Jason Necaise ’20, qBraid lets users access the most popular quantum devices and software programs on an intuitive, cloud-based platform.
Professors Michael McDonald and Kristala Prather are honored as “Committed to Caring.”
An alternative to massive particle colliders, the approach could reveal insights into the universe’s starting ingredients.