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18 notícias encontradas para "quantum"
The proton is more quantum than we thought
The proton is more quantum than we thought
Our understanding of the internal structure of protons is largely based on classical physics, but data compiled from accelerator experiments has uncovered quantum behaviour that has never been seen before.
Scientific advancement has never been more prolific—so why has trust in science plummeted?
Scientific advancement has never been more prolific—so why has trust in science plummeted?
From genome editing to quantum computing, scientific progress is accelerating at an unprecedented pace, yet public faith in science is collapsing. Our species has mapped the human genome, created powerful computers that sit in the palms of our hands and extended human life spans
Quantum heat circuits learn electronics' oldest trick: Sharing a power supply
Quantum heat circuits learn electronics' oldest trick: Sharing a power supply
Every electronic and optoelectronic device generates heat, and today that heat is managed almost entirely from the outside. Heatsinks, fans, cold plates and refrigerators are bulky exterior measures bolted onto a chip or package after the fact. They treat heat as a single average
Discovery of 'slow' electrons in 2D material could lead to new memory device
Discovery of 'slow' electrons in 2D material could lead to new memory device
Over the last decade, researchers have developed two-dimensional materials with fascinating quantum effects that could be harnessed for next-generation technologies.
Quantum voting trickery could make elections more secure
Quantum voting trickery could make elections more secure
In an election, how can you make sure that everyone's votes are counted but also kept entirely secret? Quantum mechanics may have the answer
Quantum Computing Q2 2026 Earnings Preview
Quantum Computing Q2 2026 Earnings Preview
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Controlled cracking technique prints quantum dots into tiny pixels for sharper displays
Controlled cracking technique prints quantum dots into tiny pixels for sharper displays
Recent technological advances have enabled the development of increasingly sophisticated, sharper displays for electronic devices. Many modern displays use light-emitting diodes, or LEDs, tiny semiconductor-based components that emit light when an electrical current passes throug
Foto: Robert So / Pexels
Two-qubit entangling gate flags its own errors as detectable photon losses
Quantum errors are a normal part of quantum computing because fragile physical qubits (the tiny components storing data) can easily break down because of environmental noise, like heat, stray signals or microscopic vibrations. Typical fixes involve vast amounts of extra hardware
Molecular orbitals imaged in 3D, opening path to femtosecond videos
Molecular orbitals imaged in 3D, opening path to femtosecond videos
One of the most famous and intriguing results of quantum mechanics is the finding that fundamental particles, such as electrons, cannot be pinned down to one single location. Instead, a particle is described by its "wavefunction," which allows researchers to derive probability di
Sunlight-powered setup generates quantum entanglement
Sunlight-powered setup generates quantum entanglement
Today's quantum technologies rely on energy-intensive lasers, raising concerns that scaling them up could further increase energy demands. In new work, researchers have demonstrated that quantum entanglement between photons can be generated directly from sunlight, offering a pote
Foto: Ludvig Hedenborg / Pexels
X(2370) emerges as glueball-dominated particle in collider experiments
At the International Conference on High Energy Physics in Brazil, the BESIII Collaboration report that, after 15 years of sustained research, it identified the dominant constituent of the X(2370) as a pseudoscalar glueball with spin-parity quantum numbers of 0⁻⁺.
New 'shape-shifting' architecture brings versatility to photonic quantum computing
New 'shape-shifting' architecture brings versatility to photonic quantum computing
Using light to process quantum information is one of the most promising approaches to building future quantum computers. Light particles, known as photons, are excellent carriers of quantum information, but their lack of natural interactions has created a major challenge for rese