A chirality-switching model of 2D active particles produces robust topological edge currents in confinement and at phase-separation interfaces, distinct from standard motility-induced phase separation.
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2026 2verdicts
UNVERDICTED 2representative citing papers
Odd mobility in a two-temperature Brownian dimer produces handed correlations between particles and increases thermal conductance without altering net heat flow or dissipation under handedness reversal.
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Designing topological edge currents in chiral active matter
A chirality-switching model of 2D active particles produces robust topological edge currents in confinement and at phase-separation interfaces, distinct from standard motility-induced phase separation.
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Odd transport in a two-temperature Brownian dimer
Odd mobility in a two-temperature Brownian dimer produces handed correlations between particles and increases thermal conductance without altering net heat flow or dissipation under handedness reversal.