Increasing dipolar strength drives magnetic active matter from free swimming into clustered states, implying an upper bound on useful magnetosome-chain moments beyond which magnetotactic performance declines.
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Macroscopic bioinspired magnetic active matter and the physical limits of magnetotaxis
Increasing dipolar strength drives magnetic active matter from free swimming into clustered states, implying an upper bound on useful magnetosome-chain moments beyond which magnetotactic performance declines.