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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

Research team shows theoretical quantum speedup with the quantum approximate optimization algorithm

In a new paper in Science Advances, researchers at JPMorgan Chase, the U.S. Department of Energy's (DOE) Argonne National Laboratory and Quantinuum have demonstrated clear evidence of a quantum algorithmic speedup for the quantum approximate optimiza.....»»

Category: topSource:  physorgRelated NewsMay 30th, 2024

Amazon’s Memorial Day sale has a 75-inch QLED TV under $900

The 75-inch Vizio Quantum Pro 4K QLED TV is on sale from Amazon with a $102 discount for Memorial Day, bringing the massive screen's price down to only $898......»»

Category: topSource:  digitaltrendsRelated NewsMay 26th, 2024

Quantum Internet Demonstrations Debut in Three Cities

It’s a “big deal” to demonstrate entangled quantum networks outside a lab.....»»

Category: scienceSource:  sciamRelated NewsMay 24th, 2024

3D-MAT, a thermal protection material for the Artemis Generation

The 3-Dimensional Multifunctional Ablative Thermal Protection System (3D-MAT) is a thermal protection material developed as a critical component of Orion, NASA's newest spacecraft built for human deep space missions. It is able to maintain a high lev.....»»

Category: topSource:  physorgRelated NewsMay 24th, 2024

Researchers describe spin-boson systems to configure quantum devices

Many of today's quantum devices rely on collections of qubits, also called spins. These quantum bits have only two energy levels, the "0" and the "1." However, spins in real devices also interact with light and vibrations known as bosons, greatly com.....»»

Category: topSource:  physorgRelated NewsMay 24th, 2024

First topological quantum simulator device in strong light-matter interaction regime to operate at room temperatures

Researchers at Rensselaer Polytechnic Institute have fabricated a device no wider than a human hair that will help physicists investigate the fundamental nature of matter and light. Their findings, published in the journal Nature Nanotechnology, coul.....»»

Category: topSource:  pcmagRelated NewsMay 24th, 2024

Quantum photonic technologies set to be more reliable with new interferometer

An increasing number of emerging quantum applications operate using optical technologies. Essentially, photons carry information at the speed of light and over long distances, making them good candidates for fast and secure communications and quantum.....»»

Category: topSource:  physorgRelated NewsMay 23rd, 2024

The tunable coupling of two distant superconducting spin qubits

Quantum computers, computing devices that leverage the principles of quantum mechanics, could outperform classical computing on some complex optimization and processing tasks. In quantum computers, classical units of information (bits), which can eit.....»»

Category: topSource:  informationweekRelated NewsMay 22nd, 2024

Researchers report structure for developing high-efficiency crystalline white organic light-emitting diodes

Organic light-emitting diodes (OLED) have emerged as a new generation of display technology. Organic crystalline materials possess superior thermal stability, chemical stability, and high carrier mobility, making them an ideal choice for developing l.....»»

Category: topSource:  physorgRelated NewsMay 21st, 2024

New quantum dot approach can enhance electrical conductivity of solar cells

A team led by Professor Jongmin Choi of the Department of Energy Science and Engineering has developed a PbS quantum dot that can rapidly enhance the electrical conductivity of solar cells. The findings are published in the journal Small......»»

Category: topSource:  physorgRelated NewsMay 20th, 2024

Scientists discover single atom defect in 2D material can hold quantum information at room temperature

Scientists have discovered that a "single atomic defect" in a layered 2D material can hold onto quantum information for microseconds at room temperature, underscoring the potential of 2D materials in advancing quantum technologies......»»

Category: topSource:  physorgRelated NewsMay 20th, 2024

Saturday Citations: Mediterranean diet racks up more points; persistent quantum coherence; vegan dogs

This week, we reported on the birth throes of black holes, the questionable assertions of a study about vegan dogs and a technique for observing entanglement without breaking quantum coherence......»»

Category: topSource:  informationweekRelated NewsMay 18th, 2024

Researchers realize multiphoton electron emission with non-classical light

Strong field quantum optics is a rapidly emerging research topic, which merges elements of non-linear photoemission rooted in strong field physics with the well-established realm of quantum optics. While the distribution of light particles (i.e., pho.....»»

Category: topSource:  informationweekRelated NewsMay 18th, 2024

Researchers develop world"s smallest quantum light detector on a silicon chip

Researchers at the University of Bristol have made an important breakthrough in scaling quantum technology by integrating the world's tiniest quantum light detector onto a silicon chip. The paper, "A Bi-CMOS electronic photonic integrated circuit qua.....»»

Category: topSource:  pcmagRelated NewsMay 17th, 2024

Tracing the history of perturbative expansion in quantum field theory

Perturbative expansion is a valuable mathematical technique which is widely used to break down descriptions of complex quantum systems into simpler, more manageable parts. Perhaps most importantly, it has enabled the development of quantum field theo.....»»

Category: topSource:  pcmagRelated NewsMay 17th, 2024

Scientists demonstrate the survival of quantum coherence in a chemical reaction involving ultracold molecules

If you zoom in on a chemical reaction to the quantum level, you'll notice that particles behave like waves that can ripple and collide. Scientists have long sought to understand quantum coherence, the ability of particles to maintain phase relationsh.....»»

Category: topSource:  physorgRelated NewsMay 16th, 2024

Utilizing scanning SQUID microscopy to investigate local magnetic response of Bi2212

Phase transitions in different states of matter, such as the condensation of gases into liquids or the transition from a normal metal to a superconducting state, can be described using Ginzburg-Landau symmetry-breaking theory. However, such a theory.....»»

Category: topSource:  physorgRelated NewsMay 16th, 2024

Coupling quantum mechanical simulations and AI paves way for screening new superconductors

Superconductors are materials that conduct electricity without resistance and are essential for several technological advancements, which include medical imaging and energy-efficient technology. However, most known superconductors operate under extre.....»»

Category: topSource:  physorgRelated NewsMay 16th, 2024

Researchers call for a new measurement of time for tunneling particles

In an amazing phenomenon of quantum physics known as tunneling, particles appear to move faster than the speed of light. However, physicists from Darmstadt believe that the time it takes for particles to tunnel has been measured incorrectly. They pro.....»»

Category: topSource:  physorgRelated NewsMay 16th, 2024

Method milestone for quantum physics: Rapid test for topological 2D materials

Topological quantum materials are hailed as a cornerstone of future technological advancements. Yet, validating their exceptional qualities has always been a lengthy process......»»

Category: topSource:  physorgRelated NewsMay 16th, 2024