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...
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...
Researchers have shown that ultracold atoms can be driven into a strange new quantum state called a fractional Fermi sea, where particles organize themselves in unexpected ways. Th...
Insider Brief PRESS RELEASE — In a new study published in Physical Review Letters, a team of the Nägerl group jointly with theory collaborator Alvise Bastianello from the CNRS a...
Scientists have engineered a never-before-seen quantum state, uncovering a new phase of matter with hidden order beyond conventional theory. Researchers have shown that an unusual...
Источник: Компьютерра - Журнал о науке и технологиях Физики из США создали новое состояние материи — квантовую жидкость — в твердом полупроводнике. Это открытие приближает создани...
Researchers have shown that ultracold atoms can be driven into a strange new quantum state called a fractional Fermi sea, where particles organize … Source
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...
Scientists have created the first quantum material that can sort and transport different quantum states of light at room temperature, potentially removing the need for bulky, ultra...
A new laser-optical system uses 2,000 controllable beams to precisely position atoms, enabling key logic processes in a quantum computer.
Can quantum materials finally escape cryogenic cooling? Researchers have engineered a material that can preserve quantum behaviour under room temperatures. Researchers at Louisiana...
Astronomers may have just confirmed one of the quirkiest aspects of quantum mechanics: that seemingly empty space can alter the behavior of light. This phenomenon, called "vacuum b...
The "quantum droplet" represents an unlikely, powerful union of two different categories of particles.
A sea of quantum weirdness.ScienceAlert stories are written, fact-checked, and edited by humans, never generated by AI. Don't miss a story, subscribe here.
A stable honeycomb borophene layer hosts strongly interacting electrons that form a quantum liquid crystal state, with potential for superconducting electronics.
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...
The International Space Station is now home to an even more capable quantum laboratory, where NASA cools atoms to nearly absolute zero to study one of the strangest states of matte...
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...
Quantum materials could transform technologies ranging from powerful computers and highly secure communications to advanced energy systems, but one major obstacle has long stood in...
The lab is about the size of a mini fridge, but it’s tackling questions on a cosmic scale.
Two very different types of quantum particles may be able to form stable droplets that hold themselves together, challenging decades of conventional thinking. The prediction could...
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...
A newly-developed superconducting quantum heat engine not only advances our understanding of thermodynamics but also enables technologies needed for high-qubit quantum computers.
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