Simulating the non-equilibrium dynamics of quantum field theories in nature is generally intractable with classical methods, but is a promising application for quantum computers. Unfortunately, ...
Highly charged heavy ions form a very suitable experimental field for investigating quantum electrodynamics (QED), the best-tested theory in physics describing all electrical and magnetic interactions ...
Spin glasses are physical systems in which the small magnetic moments of particles (i.e., spins) interact with each other in a random way. These random interactions between spins make it impossible ...
MIAMI, March 03, 2024 (GLOBE NEWSWIRE) -- Ibogaine By David Dardashti, a leading technology platform, is pleased to announce the successful development of an algorithm which revolutionizes the way ...
A new graph-theoretic framework provides a unified description of atom-light interactions across regimes ranging from weak to ...
For the last 80 years, the theory of quantum electrodynamics (QED), which describes all electromagnetic interactions, has been a cornerstone of the standard model, withstanding the scrutiny of ...
A processor made of five-level, trapped-ion “ququints” captures the intricate particle–antiparticle interactions of quantum electrodynamics theory. Simulations are the main tool for studying ...
Chapters 0:00 What’s the magnetic force? 0:46 Going deep into a magnet 1:33 Quantum property of spin 2:35 How does a material ...
Waveguide Quantum Electrodynamics: Multiple superconducting qubits are coupled via a microwave waveguide to form collective ...
For nearly half a century, resonance fluorescence has served as one of the cleanest and most fundamental laboratories in all of quantum optics. Shine a laser on a single two-level atom, tuned ...
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