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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

Theoretical research holds promise for advancing modular quantum information processing

The operation of a quantum computer relies on encoding and processing information in the form of quantum bits—defined by two states of quantum systems such as electrons and photons. Unlike binary bits used in classical computers, quantum bits can e.....»»

Category: topSource:  informationweekRelated NewsAug 15th, 2024

NIST releases finalized post-quantum encryption standards

NIST has finalized its principal set of encryption algorithms designed to withstand cyberattacks from a quantum computer. The announced algorithms are specified in the first completed standards from NIST’s post-quantum cryptography (PQC) standardiz.....»»

Category: securitySource:  netsecurityRelated NewsAug 14th, 2024

NASA demonstrates "ultra-cool" quantum sensor for first time in space

NASA's Cold Atom Lab, a first-of-its-kind facility aboard the International Space Station, has taken another step toward revolutionizing how quantum science can be used in space. Members of the science team measured subtle vibrations of the space sta.....»»

Category: topSource:  physorgRelated NewsAug 13th, 2024

A new approach to fine-tuning quantum materials

Quantum materials—those with electronic properties that are governed by the principles of quantum mechanics, such as correlation and entanglement—can exhibit exotic behaviors under certain conditions, such as the ability to transmit electricity w.....»»

Category: topSource:  physorgRelated NewsAug 13th, 2024

Study unveils limits on the extent to which quantum errors can be "undone" in large systems

Quantum computers have the potential of outperforming conventional computers on some practically relevant information processing problems, possibly even in machine learning and optimization. Yet their large-scale deployment is not yet feasible, large.....»»

Category: topSource:  physorgRelated NewsAug 11th, 2024

Achieving quantum memory in the notoriously difficult X-ray range

Light is an excellent carrier of information used not only for classical communication technologies but also increasingly for quantum applications such as quantum networking and computing. However, processing light signals is far more complex, compar.....»»

Category: topSource:  physorgRelated NewsAug 9th, 2024

Quantum computing: Finding solutions by the people for the people

PEARC24 launched its first Workshop on Broadly Accessible Quantum Computing (QC) as the full conference began, July 22, in Providence, RI. Led by NCSA's Bruno Abreu and QuEra's Tomasso Macri, 30+ participants included quantum chemists, system adminis.....»»

Category: topSource:  physorgRelated NewsAug 9th, 2024

PrivacyLens uses thermal imaging to turn people into stick figures

"Most consumers do not think about what happens to data collected by smart home devices." Enlarge / The round lens of PrivacyLens captures standard digital video while the square lens senses heat. The heat sensor improves the cam.....»»

Category: topSource:  arstechnicaRelated NewsAug 9th, 2024

The link between fuzzy images and quantum fields

Mathematical solutions to thorny quantum problems can be found more quickly by exploiting the correspondence between the statistical methods used in deep learning and techniques for implementing quantum simulations, a team led by a RIKEN researcher h.....»»

Category: topSource:  physorgRelated NewsAug 8th, 2024

X-ray imagery of vibrating diamond opens avenues for quantum sensing

When it comes to materials for quantum sensors, diamond is the best game in town, says Cornell University professor Gregory Fuchs. Now he and a team of scientists have upped diamond's game by generating exquisite imagery of diamond undergoing microsc.....»»

Category: topSource:  physorgRelated NewsAug 7th, 2024

Lasers deliver powerful shocking punch in material experiments

Shock experiments are widely used to understand the mechanical and electronic properties of matter under extreme conditions, like planetary impacts by meteorites. However, after the shock occurs, a clear description of the post-shock thermal state an.....»»

Category: topSource:  physorgRelated NewsAug 7th, 2024

After AI, quantum computing eyes its "Sputnik" moment

Quantum computing promises society-changing breakthroughs in drug development and tackling climate change, and on an unassuming English high street, the race to unleash the latest tech revolution is gathering pace......»»

Category: topSource:  informationweekRelated NewsAug 7th, 2024

Team fabricates world"s highest-performance superconducting wire segment

Our future energy may depend on high-temperature superconducting (HTS) wires. This technology's ability to carry electricity without resistance at temperatures higher than those required by traditional superconductors could revolutionize the electric.....»»

Category: topSource:  informationweekRelated NewsAug 7th, 2024

Can quantum particles mimic gravitational waves?

When two black holes collide, space and time shake and energy spreads out like ripples in a pond. These gravitational waves, predicted by Einstein in 1916, were observed for the first time by the Laser Interferometer Gravitational-Wave Observatory (L.....»»

Category: topSource:  physorgRelated NewsAug 1st, 2024

Experiment uses quantum techniques to stimulate photons, enhancing search for dark matter

Scientists cannot observe dark matter directly, so to "see" it, they look for signals that it has interacted with other matter by creating a visible photon. However, signals from dark matter are incredibly weak. If scientists can make a particle dete.....»»

Category: topSource:  physorgRelated NewsAug 1st, 2024

Layered superconductor coaxed to show unusual properties with potential for quantum computing

A team led by researchers from the California NanoSystems Institute at UCLA has designed a unique material based on a conventional superconductor—that is, a substance that enables electrons to travel through it with zero resistance under certain co.....»»

Category: topSource:  informationweekRelated NewsJul 31st, 2024

Quantum information theorists shed light on entanglement, one of the spooky mysteries of quantum mechanics

The year 2025 marks the 100th anniversary of the birth of quantum mechanics. In the century since the field's inception, scientists and engineers have used quantum mechanics to create technologies such as lasers, MRI scanners and computer chips......»»

Category: topSource:  pcmagRelated NewsJul 31st, 2024

Researchers develop general framework for designing quantum sensors

Researchers from North Carolina State University and the Massachusetts Institute of Technology have designed a protocol for harnessing the power of quantum sensors. The protocol could give sensor designers the ability to fine-tune quantum systems to.....»»

Category: topSource:  physorgRelated NewsJul 30th, 2024

Researchers identify unique phenomenon in Kagome metal

In traditional Japanese basket-weaving, the ancient "Kagome" design seen in many handcrafted creations is characterized by a symmetrical pattern of interlaced triangles with shared corners. In quantum physics, the Kagome name has been borrowed by sci.....»»

Category: topSource:  physorgRelated NewsJul 30th, 2024

Researchers trap atoms, force them to serve as photonic transistors

Researchers at Purdue University have trapped alkali atoms (cesium) on an integrated photonic circuit, which behaves like a transistor for photons (the smallest energy unit of light) similar to electronic transistors. These trapped atoms demonstrate.....»»

Category: topSource:  physorgRelated NewsJul 29th, 2024