A stable "exceptional fermionic superfluid," a new quantum phase that intrinsically hosts singularities known as exceptional ...
Quantum computers, systems that process information leveraging quantum mechanical effects, could soon outperform classical computers on some complex computational problems. These computers rely on ...
Morning Overview on MSN
Scientists discover a new superfluid phase in odd quantum systems
Physicists have identified a new superfluid phase in a class of quantum systems that, until recently, looked too unstable and ...
An experiment with ultracold atoms reveals that a strongly driven quantum system doesn’t always heat up as expected. In daily ...
What if time is not as fixed as we thought? Imagine that instead of flowing in one direction – from past to future – time could flow forward or backwards due to processes taking place at the quantum ...
Nvidia claims to have kicked off the “quantum-GPU computing era,” unveiling a way for quantum computers to interconnect with classical systems. Revealed at the chip giant’s GTC event in Washington, ...
An analog-digital approach to quantum simulation could lay the foundations for the next generation of supercomputers to finally outpace their classical predecessors. Reading time 3 minutes Quantum ...
Quantum systems tend to become less “quantum-y” as they interact with their environment. So when developing a mathematical description, it’s usually simpler just to view them as being closed off from ...
Morning Overview on MSN
A dust-sized device could supercharge quantum computers
A device smaller than a grain of dust is emerging as a surprisingly powerful candidate to reshape how quantum computers are built and scaled. Instead of relying on room-filling optics and fragile lab ...
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