Placing materials under extremely strong magnetic fields can give rise to unusual and fascinating physical phenomena or ...
Might the universe’s most extreme black holes owe their existence to magnetism? In 2023, gravitational wave detectors LIGO, ...
Small in-plane magnetic fields switch skyrmion chirality and improve lattice order in a two-dimensional magnet, pointing to ...
Will the pole shift actually happen? Discover more about Earth’s magnetic poles and how they’ve shifted in the past.
"Once you consider magnetic fields, you can actually explain the origins of this unique event." Scientists have gotten to the ...
A team that has developed patent-pending one-dimensional boron nitride nanotubes (BNNTs) containing spin qubits, or spin defects. The BNNTs are more sensitive in detecting off-axis magnetic fields at ...
The simulations revealed that stronger magnetic fields create lighter, slower spinning black holes, while weaker fields allow heavier, faster spinning ones. This relationship suggests black holes ...
Discover the groundbreaking concept of altermagnetism, a new magnetic order bridging ferromagnetism and antiferromagnetism ...
WEST LAFAYETTE, Ind. — Purdue University researchers have developed patent-pending one-dimensional boron nitride nanotubes (BNNTs) containing spin qubits, or spin defects. The BNNTs are more sensitive ...