

A research team led by Professor Zhao Weisheng from the School of Integrated Circuit Science and Engineering at Beihang University has achieved a significant breakthrough in the electrical control of exchange bias at the sub-10 nmregime. The work, published in Nature Communications under the title "Electrical control of exchange bias in sub-10 nm regime enabled by single-nanotube patterning," i...

A collaborative research team led by Associate Professor Zhang Bei from the School of Automation Science and Electrical Engineering at Beihang University and Associate Professor Wang Le from the Department of Physics at Renmin University of China, has systematically reviewed the technological evolution of solar polarization navigation, with particular emphasis on recent advances in vortex polar...

Recently, the team led by Professor Zhao Weisheng at the School of Integrated Circuit Science and Engineering, Beihang University, has made significant progress in the field of orbitronics. To address the two major challenges in orbitronic material systems—low writing efficiency and limited engineering compatibility—the team designed a highly efficient and magnetic tunnel junction (MTJ)-compatible Ru/W orbital torque bottom electrode, and successfully achieved picosecond electrical switching of MTJs using orbital torque.

A research team led by Professors Lu Guanghong and Zhou Hongbo from the School of Physics at Beihang University has elucidated a fundamental mechanism by which hydrogen impurity alters the evolution of irradiation damage inmaterials. The study, titled "Hydrogen reduced interstitial-vacancy cluster recombination in metals," was published in the journal Nature Communications.The interplay between...

The research group led by Zhang Bei from the School of Automation Science and Electrical Engineering at Beihang University, for the first time, systematically elucidated the physical essence of vortex polarimetry from the perspective of photonic orbital angular momentum (OAM). The study reveals two underlying physical mechanisms: first, the vortex retarder enables the mutual conversion between ...

Geometrically frustrated spin systems offer an ideal platform for uncovering novel states of matter, such as quantum spin liquids and spin ices, and represent a key frontier in condensed matter physics. A research team led by Professor Kan Zhao from the School of Physics, Beihang University, in collaboration with researchers from the Institute of Physics and the Institute of Theoretical Physics...
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