Direct QDM imaging shows that pinned uncompensated moments in FeRh preserve magnetic orientation across AFM-FM phase transitions, enabling AFM-based magnetic memory.
Optical magnetic imaging of living cells
2 Pith papers cite this work, alongside 745 external citations. Polarity classification is still indexing.
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Pith papers citing it
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2026 2verdicts
UNVERDICTED 2representative citing papers
Variational optimization on dipolar spin chains reaches 0.92 of the quantum Fisher information benchmark for joint magnetometry and gradiometry, delivering a 4.2x advantage over the standard quantum limit.
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Demonstrating magnetic memory in iron-rhodium structures using a quantum diamond microscope
Direct QDM imaging shows that pinned uncompensated moments in FeRh preserve magnetic orientation across AFM-FM phase transitions, enabling AFM-based magnetic memory.
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Variational Joint Magnetometry and Gradiometry on Dipolar Spin Chains
Variational optimization on dipolar spin chains reaches 0.92 of the quantum Fisher information benchmark for joint magnetometry and gradiometry, delivering a 4.2x advantage over the standard quantum limit.