Researchers find unexpected magnetic effect
Combining two thin-film materials yields surprising room-temperature magnetism.
Combining two thin-film materials yields surprising room-temperature magnetism.
MIT postdoc Cui-Zu Chang makes a spintronic breakthrough in the Moodera group.
Step-by-step, the Moodera Research Group is building the essential knowledge and hardware for next-generation quantum computers.
In an effort to improve reactor safety and efficiency, new research aims to bring corrosive particle buildup out of the shadows.
Winning teams will use grants to advance research in areas including fuel cells, solar-powered desalination, and impacts of electric vehicle charging on the power grid.
Instead of burning up this complex hydrocarbon, let’s make devices from it, says Jeffrey Grossman.
Researchers create perfect nanoscrolls from graphene’s imperfect form.
Spinning cells could attract each other across surprisingly long distances.
MIT physicist uses laser beams to study exotic electronic phenomena at high speeds.
MIT ranked within the top 5 globally for 19 of 42 subject areas.
Anuradha Agarwal’s miniaturized infrared detection technology research offers the promise of inexpensive sensor networks for many applications.
Assistant professor studies how small differences in molecular structure alter behavior in unexpected ways for energy-related applications.
New fieldwork program in civil and environmental engineering takes students to Italy for a lesson in ancient infrastructure and materials.
New theory, inspired by chocolate coatings, predicts thickness of thin shells.
National public-private consortium led by MIT will involve manufacturers, universities, agencies, companies.