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Long-range translational order and hyperuniformity in two-dimensional chiral active crystal

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arxiv 2402.19192 v3 pith:6CVH45LX submitted 2024-02-29 cond-mat.soft cond-mat.stat-mech

classification cond-mat.softcond-mat.stat-mech
keywords activechiraldensitiesdimensionexplainedfourhighhyperuniformity
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abstract

We numerically study two-dimensional athermal chiral active particles at high densities. The particles in this system perform the circular motion with frequency $\Omega$. We show that the system crystallizes at high densities even in two dimensions, accompanied by the true long-range translational order. This is due to the anomalous suppression of displacement fluctuations associated with hyperuniformity. These findings can be explained using an active elastic theory quantitatively. Surprisingly, the crystals become unstable and melt in the limit of $\Omega=0$, for the spatial dimension of four or less. This result can be explained by a mechanism akin to quenched random systems for which the lower critical dimension is four.

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Cited by 2 Pith papers

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. Spontaneous generation of angular momentum in chiral active crystals

    cond-mat.soft 2024-12 conditional novelty 7.0 of 10

    Chiral active crystals are predicted to acquire a net angular momentum with a non-monotonic dependence on chirality, plus a non-dispersive spectral peak and a rotational entropy-production contribution.

  2. Non-equilibrium coexistence between a fluid and a hotter or colder crystal of granular hard disks

    cond-mat.soft 2024-11 conditional novelty 7.0 of 10

    A monodisperse granular hard-disk system can show coexistence of a hotter solid and a colder liquid when energy is supplied by a thermal bath, an effect explained by the lower collision frequency of the solid.

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