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Ligo Surpasses The Quantum Limit - Latest Technology News | TechNewsNow.com :: TechnewsNow.com
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LIGO surpasses the quantum limit

In 2015, the Laser Interferometer Gravitational-Wave Observatory (LIGO), made history when it made the first direct detection of gravitational waves—ripples in space and time—produced by a pair of colliding black holes......»»

Category: topSource:  physorgOct 23rd, 2023

New Apple TV+ show from A24 surpasses 90% on Rotten Tomatoes

Apple’s TV+ continues its streak of strong summer releases. Following a mixed bag of shows earlier in 2024, the streaming service has found success with recent releases like the sci-fi series Dark Matter and legal thriller Presumed Innocent. And.....»»

Category: topSource:  marketingvoxRelated NewsJul 11th, 2024

New experiment investigates light-induced Meissner effect in optically driven superconductor

Superconductivity is a fascinating phenomenon, which allows a material to sustain an electrical current without any loss. This collective quantum behavior of matter only appears in certain conductors at temperatures far below ambient......»»

Category: topSource:  physorgRelated NewsJul 11th, 2024

Observation of 3D acoustic quantum Hall states

The quantum Hall effect (QHE) is one of the most notable discoveries in condensed matter physics, opening the door to topological physics. Extending QHE into three dimensions is an inspiring but challenging endeavor. This difficulty arises because th.....»»

Category: topSource:  physorgRelated NewsJul 11th, 2024

Zero-field NMR spectroscopy measures quadrupolar nuclei for the first time

Researchers at Mainz University and the University of California, Berkeley, have achieved a breakthrough in zero-field nuclear magnetic resonance spectroscopy, paving the way towards benchmarking quantum chemistry calculations......»»

Category: topSource:  marketingvoxRelated NewsJul 11th, 2024

Researchers demonstrate how to build "time-traveling" quantum sensors

The idea of time travel has dazzled sci-fi enthusiasts for years. Science tells us that traveling to the future is technically feasible, at least if you're willing to go near the speed of light, but going back in time is a no-go. But what if scientis.....»»

Category: topSource:  physorgRelated NewsJul 10th, 2024

New method achieves tenfold increase in quantum coherence time via destructive interference of correlated noise

Researchers have developed a new method to significantly enhance quantum technology performance by using the cross-correlation of two noise sources to extend coherence time, improve control fidelity, and increase sensitivity for high-frequency sensin.....»»

Category: topSource:  physorgRelated NewsJul 10th, 2024

New multimode coupler design advances scalable quantum computing

Implementing a fault-tolerant quantum processor requires coupling qubits to generate entanglement. Superconducting qubits are a promising platform for quantum information processing, but scaling up to a full-scale quantum computer necessitates interc.....»»

Category: topSource:  physorgRelated NewsJul 10th, 2024

Quantum Xchange CipherInsights enhancements identify weaknesses in enterprise cryptography

Quantum Xchange announced the latest release of CipherInsights, the company’s network monitoring, crypto-discovery and risk assessment tool. Version 11.0 includes several new features to pinpoint any weaknesses in enterprise cryptography and ease a.....»»

Category: securitySource:  netsecurityRelated NewsJul 10th, 2024

Fermionic Hubbard quantum simulator observes antiferromagnetic phase transition

In a study published in Nature, a research team has, for the first time, observed the antiferromagnetic phase transition within a large-scale quantum simulator of the fermionic Hubbard model (FHM)......»»

Category: topSource:  physorgRelated NewsJul 10th, 2024

Visualizing the boundary modes of the charge density wave in a topological material

Charge density waves are quantum phenomena occurring in some materials, which involve a static modulation of conduction electrons and the periodic distortion of the lattice. These waves have been observed in numerous condensed matter materials, inclu.....»»

Category: topSource:  physorgRelated NewsJul 10th, 2024

Moving from the visible to the infrared: Developing high quality nanocrystals

Awarded the 2023 Nobel Prize in Chemistry, quantum dots have a wide variety of applications ranging from displays and LED lights to chemical reaction catalysis and bioimaging. These semiconductor nanocrystals are so small—on the order of nanometers.....»»

Category: topSource:  physorgRelated NewsJul 9th, 2024

Why every quantum computer will need a powerful classical computer

Error-correcting a quantum computer can mean processing 100TB every second. Enlarge / A single logical qubit is built from a large collection of hardware qubits. (credit: at digit) One of the more striking things about q.....»»

Category: topSource:  arstechnicaRelated NewsJul 9th, 2024

New method could yield fast, cross-country quantum network

Quantum computers offer powerful ways to improve cybersecurity, communications, and data processing, among other fields. To realize these full benefits, however, multiple quantum computers must be connected to build quantum networks or a quantum inte.....»»

Category: topSource:  informationweekRelated NewsJul 9th, 2024

No GPS, no problem: Researchers are making quantum sensing tools more compact and accurate to replace GPS

Fundamental physics—let alone quantum physics—might sound complicated to many, but it can actually be applied to solve everyday problems......»»

Category: topSource:  theglobeandmailRelated NewsJul 9th, 2024

Quantum dot photon emitters violate Bell inequality in new study

A new study in Nature Physics demonstrates a novel method for generating quantum entanglement using a quantum dot, which violates the Bell inequality. This method uses ultra-low power levels and could pave the way for scalable and efficient quantum t.....»»

Category: topSource:  informationweekRelated NewsJul 9th, 2024

Researchers realize time reversal through input-output indefiniteness

A research team has constructed a coherent superposition of quantum evolution with two opposite directions in a photonic system and confirmed its advantage in characterizing input-output indefiniteness. The study was published in Physical Review Lett.....»»

Category: topSource:  physorgRelated NewsJul 8th, 2024

Scientists develop efficient and stable hybrid perovskite-organic LEDs with external quantum efficiency exceeding 40%

Tandem LEDs offer an effective way to integrate different light-emitting technologies for better display that meets Rec. 2020 color gamut standard. Now, scientists in China have developed a stable, efficient and high-color purity green LED with a tan.....»»

Category: topSource:  physorgRelated NewsJul 8th, 2024

A new approach to realize quantum mechanical squeezing

Mechanical systems are highly suitable for realizing applications such as quantum information processing, quantum sensing and bosonic quantum simulation. The effective use of these systems for these applications, however, relies on the ability to man.....»»

Category: topSource:  pcmagRelated NewsJul 8th, 2024

Ab initio methods help scientists make sense of complex particle collisions

When atomic nuclei and subatomic particles interact, the results are incredibly complex. These are the "many body problems" of quantum mechanics. To help make sense of these interactions, scientists create ways to simplify the range of possible outco.....»»

Category: topSource:  marketingvoxRelated NewsJul 8th, 2024

Novel 2D device for quantum cooling converts heat to voltage at ultra-low temperatures

EPFL engineers have created a device that can efficiently convert heat into electrical voltage at temperatures lower than that of outer space. The innovation could help overcome a significant obstacle to the advancement of quantum computing technolog.....»»

Category: topSource:  physorgRelated NewsJul 5th, 2024