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New focused approach can help untangle messy quantum scrambling problems

The world is a cluttered, noisy place, and the ability to effectively focus is a valuable skill. For example, at a bustling party, the clatter of cutlery, the conversations, the music, the scratching of your shirt tag and almost everything else must.....»»

Source:  PhysorgCategory: TopApr 4th, 2024Related News

"It"s ultimately about predicting everything"—theory could be a map in the hunt for quantum materials

A breakthrough in theoretical physics is an important step toward predicting the behavior of the fundamental matter of which our world is built. It can be used to calculate systems of enormous quantities of quantum particles, a feat thought impossibl.....»»

Source:  PhysorgCategory: TopApr 4th, 2024Related News

Quantum error correction used to actually correct errors

Microsoft and Quantinuum correct problems when entangling pairs of qubits. Enlarge / Quantinuum's H2 "racetrack" quantum processor. (credit: Quantinuum) Today's quantum computing hardware is severely limited in what it c.....»»

Source:  ArstechnicaCategory: TopApr 3rd, 2024Related News

Classical optical neural network exhibits "quantum speedup"

In recent years, artificial intelligence technologies, especially machine learning algorithms, have made great strides. These technologies have enabled unprecedented efficiency in tasks such as image recognition, natural language generation and proce.....»»

Source:  PhysorgCategory: TopApr 2nd, 2024Related News

A single photon emitter deterministically coupled to a topological corner state

Exploring cavity quantum electrodynamics (cQED) is pivotal for advancing quantum technology and unraveling the fundamental intricacies of light-matter interactions. A prevalent strategy involves integrating a single quantum emitter into photonic micr.....»»

Source:  PhysorgCategory: TopApr 2nd, 2024Related News

Researchers discover dual topological phases in an intrinsic monolayer crystal

Dual topological phases have been discovered in an intrinsic monolayer crystal, a finding that reveals new and unique rule-bending properties in a quantum material, an international team of scientists led by Boston College physicists reported recentl.....»»

Source:  PhysorgCategory: TopApr 2nd, 2024Related News

100 kilometers of quantum-encrypted transfer

Researchers at DTU have successfully distributed a quantum-secure key using a method called continuous variable quantum key distribution (CV QKD). The researchers have managed to make the method work over a record 100 km distance—the longest distan.....»»

Source:  PhysorgCategory: TopApr 2nd, 2024Related News

Study unveils a new family of quantum anomalous Hall insulators

In recent years, physicists and material scientists have identified various new materials marked by interesting properties and quantum effects. These materials could prove highly valuable both as platforms to study quantum effects and for the develop.....»»

Source:  PhysorgCategory: TopApr 2nd, 2024Related News

Team creates cooperative exciton-polariton condensate

Superfluorescence (SF), as a cooperative radiation effect originating from vacuum quantum fluctuations, is an ideal platform for studying many-body correlation mechanisms in an exciton ensemble, and for developing optically ultrafast techniques on br.....»»

Source:  PhysorgCategory: TopApr 1st, 2024Related News

Magnetic avalanche triggered by quantum effects: "Barkhausen noise" detected for first time

Iron screws and other so-called ferromagnetic materials are made up of atoms with electrons that act like little magnets. Normally, the orientations of the magnets are aligned within one region of the material but are not aligned from one region to t.....»»

Source:  PhysorgCategory: TopMar 28th, 2024Related News

Quantum computing just got hotter: One degree above absolute zero

For decades, the pursuit of quantum computing has struggled with the need for extremely low temperatures, mere fractions of a degree above absolute zero (0 Kelvin or –273.15°C). That's because the quantum phenomena that grant quantum computers the.....»»

Source:  PhysorgCategory: TopMar 28th, 2024Related News

A method to compute the Rényi entanglement entropy in auxiliary-field quantum Monte Carlo simulations

Entanglement is a widely studied quantum physics phenomenon, in which two particles become linked in such a way that the state of one affects the state of another, irrespective of the distance between them. When studying systems comprised of several.....»»

Source:  PhysorgCategory: TopMar 28th, 2024Related News

Quantum computing progress: Higher temps, better error correction

Amazon, IBM, and traditional silicon makers all working toward error correction. Enlarge (credit: vital) There's a strong consensus that tackling most useful problems with a quantum computer will require that the compute.....»»

Source:  ArstechnicaCategory: TopMar 27th, 2024Related News

Physicists demonstrate parity anomaly in a topological insulator

Experimental and theoretical physicists from the Würzburg Institute for Topological Insulators have observed a re-entrant quantum Hall effect in a mercury telluride device and have identified it as a signature of parity anomaly......»»

Source:  TheglobeandmailCategory: TopMar 26th, 2024Related News

Scientists on the hunt for evidence of quantum gravity"s existence at the South Pole

Several thousand sensors distributed over a square kilometer near the South Pole are tasked with answering one of the large outstanding questions in physics: does quantum gravity exist? The sensors monitor neutrinos—particles with no electrical cha.....»»

Source:  PcmagCategory: TopMar 26th, 2024Related News

Unlocking quantum computing power: Automated protocol design for quantum advantage

Imagine a world where complex calculations that currently take months for our best supercomputers to crack could be performed in a matter of minutes. Quantum computing is revolutionizing our digital world. In a research article published in Intellige.....»»

Source:  PhysorgCategory: TopMar 26th, 2024Related News

Researchers reveal new method for calculating mechanical properties of solids using machine learning

A research team from Skoltech introduced a new method that takes advantage of machine learning for studying the properties of polycrystals, composites, and multiphase systems. It attained high accuracy, nearly as good as that of quantum-mechanical me.....»»

Source:  PhysorgCategory: TopMar 25th, 2024Related News

Scientists deliver quantum algorithm to develop new materials and chemistry

U.S. Naval Research Laboratory (NRL) scientists have published the Cascaded Variational Quantum Eigensolver (CVQE) algorithm in a recent Physical Review Research article. The algorithm is expected to become a powerful tool to investigate the physical.....»»

Source:  PhysorgCategory: TopMar 25th, 2024Related News

Quantum interference could lead to smaller, faster, and more energy-efficient transistors

An international team of researchers from Queen Mary University of London, the University of Oxford, Lancaster University, and the University of Waterloo have developed a new single-molecule transistor that uses quantum interference to control the fl.....»»

Source:  PhysorgCategory: TopMar 25th, 2024Related News

The world is one step closer to secure quantum communication on a global scale

Researchers at the University of Waterloo's Institute for Quantum Computing (IQC) have brought together two Nobel prize-winning research concepts to advance the field of quantum communication......»»

Source:  PhysorgCategory: TopMar 25th, 2024Related News