Scientists Reveal Hidden Structure of a Quantum Fluid
Insider Brief PRESS RELEASE — Bose-Einstein Condensates (BECs) are often described as a “fifth state of matter”: a quantum state in which many particles lose their individual ident...
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Insider Brief PRESS RELEASE — Bose-Einstein Condensates (BECs) are often described as a “fifth state of matter”: a quantum state in which many particles lose their individual ident...
Scientists have discovered a new type of matter. Inside a cooled crystal, structures spontaneously arranged themselves into a three dimensional weave, and they did it at around roo...
MIT physicists have uncovered a surprising split in the behavior of electrons inside a quantum material: two nearly identical electronic patterns rebuild themselves in fundamentall...
The advance establishes a new solid-state platform for studying high-temperature Bose-Einstein condensates in semiconductor devices, and could one day advance quantum information s...
In a breakthrough that could transform the study of strongly correlated quantum matter, researchers at the University of Basel and the Technical University of Munich have developed...
Optical measurements can reveal the hidden collective motion and quantum dynamics of electrons inside a Wigner crystal. In a Wigner crystal, electrons behave in an unusual way. Rat...
MIT physicists found that two electronic phases inside the same quantum material emerge through surprisingly different mechanisms—one smoothly and the other in expanding pockets re...
The "quantum droplet" represents an unlikely, powerful union of two different categories of particles.
Researchers have developed a new method to reveal the collective motion of electrons in one of the most elusive states of matter: the Wigner crystal. Using light, the physicists we...
Insider Brief Quantum computing is often portrayed as a race to build better qubits, but this is just part of the bigger challenge. Beneath every qubit is an endeavor to find the r...
Under pressure, the van der Waals heavy-fermion metal CeSiI loses magnetic order and enters an unconventional superconducting state near quantum criticality.
Источник: Компьютерра - Журнал о науке и технологиях Физики из США создали новое состояние материи — квантовую жидкость — в твердом полупроводнике. Это открытие приближает создани...
Simulations reveal how disordered proteins cluster and form biomolecular condensates The post The physics of protein condensates appeared first on Physics World.
Insider Brief PRESS RELEASE — In May, a study was published in Nature Communications that identified an unusual regime of quantum oscillations in a three-dimensional topological in...
Postdoc in Data-driven modeling of engineering materials, Czech Technical University in Prague job jenda_z Fri, 07/14/2023 - 06:53 #job #p...
Author(s): Ryan WilkinsonUltracold atoms in an optical lattice could emulate a prominent model of quantum matter linked to black holes and high-temperature superconductors.[Physics...
Credit: Caltech/Gyohei Nomura A physics collaboration led by Caltech—combining the experimental laboratory of Professor Manuel Endres and the theoretical group of Professor Jason A...
Physicists have discovered a surprisingly simple way to reproduce one of the most fascinating models in modern physics - linked to black holes, quantum chaos, and exotic electronic...
Author(s): Charles DayA new theory examines the various ways quasiparticles pair up in two-dimensional semiconductors under high magnetic fields.[Physics 19, s82] Published Thu Jul...
Experiments and theoretical analysis show that under extreme magnetic fields, electrons in zirconium pentatelluride behave in an unusual way that points to a topological origin rat...
Can quantum materials finally escape cryogenic cooling? Researchers have engineered a material that can preserve quantum behaviour under room temperatures. Researchers at Louisiana...
Inside an unusual magnetic material, electrons are doing something physicists did not expect: slowing to a near crawl while moving together in quantum lockstep. A team at the Unive...
When two atomic nuclei collide at nearly the speed of light, they create one of the hottest and most energetic forms of matter known to science: quark–gluon plasma. In this extreme...
Author(s): Ryan WilkinsonA key property of superconductors called superfluid stiffness can now be measured in a wide range of 2D systems.[Physics 19, s103] Published Tue Aug 11, 20...
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