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Atomic spins set quantum fluid in motion: Experimental realization of the Einstein–de Haas effect
The Einstein–de Haas effect, which links the spin of electrons to macroscopic rotation, has now been demonstrated in a ...
Quantum computers hold the potential to revolutionize the possibilities for solving difficult computational problems that would take classical computers many years to resolve. But for those computers ...
Recent advances in the study of quantum fluids and phase transitions on graphene have opened new avenues for understanding low-dimensional quantum phenomena and harnessing their potential for future ...
For the first time, scientists have observed electrons in graphene behaving like a nearly perfect quantum fluid, challenging a long-standing puzzle in physics. By creating ultra-clean samples, the ...
The Einstein-de Haas effect has been observed in a quantum fluid, showing that changes in magnetization transfer angular ...
The swirling patterns in Vincent van Gogh’s “The Starry Night” can help us visualize quantum Kelvin-Helmholtz instability (KHI). The central spiral and surrounding stars and moon resemble the vortices ...
A never-before-observed phenomenon in quantum physics reportedly bears a striking resemblance to a world-famous work by Vincent van Gogh. Physicists from Osaka Metropolitan University and the Korea ...
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Researchers find hidden quantum effect in Vincent Van Gogh's 'The Starry Night' painting
Vincent Van Gogh's 136-year-old "The Starry Night" is making rounds on the internet. Apparently, the painting contained a replica of vortices produced during Kelvin-Helmholtz instability inside ...
Researchers at the Department of Energy’s Oak Ridge National Laboratory tested a quantum computing approach to an old challenge: solving classical fluid dynamics problems. For the test problem, the ...
For more than 50 years, scientists have dreamed of seeing the hidden patterns that govern the motion of nonlinear waves—the unpredictable ripples that shape tsunamis, tides, and turbulent flows. Now, ...
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