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Classical Time Crystals
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We consider the possibility that classical dynamical systems display motion in their lowest energy state, forming a time analogue of crystalline spatial order. Challenges facing that idea are identified and overcome. We display arbitrary orbits of an angular variable as lowest-energy trajectories for nonsingular Lagrangian systems. Dynamics within orbits of broken symmetry provide a natural arena for formation of time crystals. We exhibit models of that kind, including a model with traveling density waves.
Forward citations
Cited by 2 Pith papers
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The Nature of Phantom Dark Energy and its Relation to Time Crystals
Phantom dark energy is claimed to be, at its fundamental level, a fluid of time crystals, with the same non-canonical kinetic conditions producing both.
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Dark Energy from Time Crystals
A time-crystal scalar field is shown to satisfy the phantom dark energy conditions w < -1, c_s^2 > 0, and rho >= 0 inside the crystal region.
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