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A thermal superconducting quantum interference proximity transistor

Superconductors are materials that can achieve a state known as superconductivity, in which matter has no electrical resistance and does not allow the penetration of magnetic fields. At low temperatures, these materials are known to be highly effecti.....»»

Category: topSource:  physorgMay 5th, 2022

Quantum geometry offers new insights into "smart" materials with switchable electric polarity

Quantum theorists at the University of British Columbia have proposed a new approach to studying stacking ferroelectricity—spontaneous electric polarization—in layered, two-dimensional lab-grown materials......»»

Category: topSource:  physorgRelated NewsMay 15th, 2024

Experimental demonstration of inequivalent mutually unbiased bases for quantum information processing

Research groups demonstrated for the first time that inequivalent mutually unbiased bases (MUBs) have different information extraction capabilities for quantum information processing. The research results were published in Physical Review Letters......»»

Category: topSource:  theglobeandmailRelated NewsMay 15th, 2024

Scientists raise minimum magnetic field of a single measurement to sub-femtotesla level

A research team has, for the first time, realized the quantum amplification of an extremely weak magnetic field by using dark spin, with the magnetic field magnification exceeding a factor of 5,000 and the single magnetic field measurement accuracy r.....»»

Category: topSource:  theglobeandmailRelated NewsMay 15th, 2024

Scientists create an "optical conveyor belt" for quasiparticles

Using interference between two lasers, a research group led by scientists from RIKEN and NTT Research have created an "optical conveyor belt" that can move polaritons—a type of light-matter hybrid particle—in semiconductor-based microcavities. Th.....»»

Category: topSource:  informationweekRelated NewsMay 14th, 2024

A switch for the internal clock: Exploring quantum biology for novel medical therapies

A research collaboration has explored the effects of nuclear magnetic resonance on the internal clock of cells at different times of day and under oxygen deprivation......»»

Category: topSource:  theglobeandmailRelated NewsMay 13th, 2024

New surface acoustic wave techniques could lead to surfing a quantum internet

Researchers at the University of Rochester have used surface acoustic waves to overcome a significant obstacle in the quest to realize a quantum internet......»»

Category: topSource:  informationweekRelated NewsMay 13th, 2024

Novel hybrid scheme speeds the way to simulating nuclear reactions on quantum computers

The nuclear reactions that power the stars and forge the elements emerge from the interactions of the quantum mechanical particles, protons and neutrons. Explaining these processes is one of the most challenging unsolved problems in computational phy.....»»

Category: topSource:  physorgRelated NewsMay 13th, 2024

Visual observation of photonic Floquet–Bloch oscillations

Recently, the exploration of Bloch oscillations (BOs) in periodically driven quantum systems, equivalent to "Floquet systems," has drawn tremendous attention because their exotic characteristics are profoundly distinct from those in static systems. S.....»»

Category: topSource:  theglobeandmailRelated NewsMay 10th, 2024

NHTSA probes 200,000 Ford Super Duty trucks for risk of fire

NHTSA said it received 27 complaints alleging diesel fuel leaks due to a "fracture in the secondary fuel filter housing." The proximity of the secondary fuel filter to high heat sources could result in fire, NHTSA said......»»

Category: topSource:  autonewsRelated NewsMay 10th, 2024

Researchers develop compiler acceleration technology for quantum computers

Researchers have succeeded in developing a technique to quickly search for the optimal quantum gate sequence for a quantum computer using a probabilistic method......»»

Category: topSource:  theglobeandmailRelated NewsMay 9th, 2024

Alternating triangular charge density wave domains observed within a layered superconducting compound

A research team consisting of NIMS and the Tokyo University of Science observed charge density waves (CDWs) within niobium diselenide (NbSe2)—a layered compound—at cryogenic temperatures and discovered that they form alternating triangular domain.....»»

Category: topSource:  theglobeandmailRelated NewsMay 9th, 2024

Solid-state reaction among multiphase multicomponent ceramic enhances ablation performance, study finds

Multicomponent ultra-high temperature ceramic (UHTC) has attracted much attention in research due to its superior high-temperature mechanical properties, lower thermal conductivity and enhanced oxidation resistance......»»

Category: topSource:  physorgRelated NewsMay 8th, 2024

Strictly no dancing: Researchers discover "new molecular design rules"

Since the discovery of quantum mechanics more than a hundred years ago, it has been known that electrons in molecules can be coupled to the motion of the atoms that make up the molecules. Often referred to as molecular vibrations, the motion of atoms.....»»

Category: topSource:  physorgRelated NewsMay 8th, 2024

Physicist achieve milestone in quantum simulation with circular Rydberg qubits

A team of researchers from the 5th Institute of Physics at the University of Stuttgart is making important progress in the field of quantum simulation and quantum computing based on Rydberg atoms by overcoming a fundamental limitation: the limited li.....»»

Category: topSource:  physorgRelated NewsMay 8th, 2024

The quantum theory of gravitation, effective field theories and strings: Past and present

Gravity is one of four fundamental interactions. The most precise description of this force is still provided by Einstein's General Theory of Relativity, published in 1915, an entirely classical theory. This description sets gravity apart from the ot.....»»

Category: topSource:  physorgRelated NewsMay 7th, 2024

New super-pure silicon chip opens path to powerful quantum computers

Researchers at the Universities of Melbourne and Manchester have invented a breakthrough technique for manufacturing highly purified silicon that brings powerful quantum computers a big step closer......»»

Category: topSource:  physorgRelated NewsMay 7th, 2024

Experiment opens door for millions of qubits on one chip

Researchers from the University of Basel and the NCCR SPIN have achieved the first controllable interaction between two hole spin qubits in a conventional silicon transistor. The breakthrough opens up the possibility of integrating millions of these.....»»

Category: topSource:  physorgRelated NewsMay 6th, 2024

New quantum sensing scheme could lead to enhanced high-precision nanoscopic techniques

Researchers from the University of Portsmouth have unveiled a quantum sensing scheme that achieves the pinnacle of quantum sensitivity in measuring the transverse displacement between two interfering photons......»»

Category: topSource:  physorgRelated NewsMay 4th, 2024

Physicists pioneer new quantum sensing platform

Quantum sensors detect the smallest of environmental changes—for example, an atom reacting to a magnetic field. As these sensors "read" the unique behaviors of subatomic particles, they also dramatically improve scientists' ability to measure and d.....»»

Category: topSource:  physorgRelated NewsMay 3rd, 2024

Physicists arrange atoms in close proximity, paving way for exploring exotic states of matter

Proximity is key for many quantum phenomena, as interactions between atoms are stronger when the particles are close. In many quantum simulators, scientists arrange atoms as close together as possible to explore exotic states of matter and build new.....»»

Category: topSource:  physorgRelated NewsMay 3rd, 2024