Imagine trying to design a key for a lock that is constantly changing its shape. That is the exact challenge we face in ...
Dot Physics on MSN
Python physics tutorial: Non-trivial 1D square wells explained
Explore non-trivial 1D square wells in Python with this detailed physics tutorial! 🐍⚛️ Learn how to model quantum systems, analyze energy levels, and visualize wave functions using Python simulations ...
5don MSN
Simplifying quantum simulations—symmetry can cut computational effort by several orders of magnitude
Quantum computer research is advancing at a rapid pace. Today's devices, however, still have significant limitations: For example, the length of a quantum computation is severely limited—that is, the ...
Duke Quantum Center researchers use a neutral-atom platform to simulate unusual localization effects that could underpin robust quantum information storage.
Researchers in Australia have unveiled the largest quantum simulation platform built to date, opening a new route to exploring the complex behavior of quantum materials at unprecedented scales.
An unprecedently large quantum simulator could shed light on how exotic, potentially useful quantum materials work and help us optimise them in the future. Quantum computers may eventually harness ...
With tech stocks benefiting from sky-high valuations, one quickly-growing corner could define the sector's next chapter. That's because quantum computing offers "extraordinary potential," according to ...
Nvidia doesn't need to build a quantum computer to make a lot of money in the quantum computing market. Back in California's gold rush in the mid-1800s, thousands of individuals flocked to the region ...
Google has taken a decisive step towards practical quantum computers. A research team from Google Quantum AI has reported the first “verifiable quantum advantage”—in other words, a measurable ...
Google LLC’s quantum division today released research showing that its Willow quantum chip can provide elegant and accurate simulations about the physical properties of molecules much faster than ...
A team at the University at Buffalo has made it possible to simulate complex quantum systems without needing a supercomputer. By expanding the truncated Wigner approximation, they’ve created an ...
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