Magnetic noise in CrCl3 nanoflakes is strongest in the ferromagnetic phase, as shown by nitrogen-vacancy relaxometry and ferromagnetic resonance.
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2 Pith papers cite this work, alongside 30 external citations. Polarity classification is still indexing.
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NISQ quantum simulation of spin-wave spectra in 2D chromium tri-halide magnets achieves agreement with classical benchmarks at quasi-constant wall-time scaling.
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Probing GHz Spin Dynamics Across Magnetic Phase Transitions in CrCl3 Nanoflakes Using Nitrogen-Vacancy Microscopy
Magnetic noise in CrCl3 nanoflakes is strongest in the ferromagnetic phase, as shown by nitrogen-vacancy relaxometry and ferromagnetic resonance.
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Quantum Simulation of Magnetic Materials: from Ab-Initio to NISQ
NISQ quantum simulation of spin-wave spectra in 2D chromium tri-halide magnets achieves agreement with classical benchmarks at quasi-constant wall-time scaling.