4.8 Article

Space-Time Crystals of Trapped Ions

期刊

PHYSICAL REVIEW LETTERS
卷 109, 期 15, 页码 -

出版社

AMER PHYSICAL SOC
DOI: 10.1103/PhysRevLett.109.163001

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资金

  1. Ernest S. Kuh Endowed Chair Professorship
  2. Miller Professorship at UC Berkeley
  3. NSF Nanoscale Science and Engineering Center [CMMI-0751621]
  4. NBRPC (973 Program) [2011CBA00300, 2011CBA00302]
  5. IARPA MUSIQC program
  6. ARO
  7. AFOSR MURI program
  8. NNSFC [61073174, 61033001, 61061130540, 11105136]
  9. Postdoc Research Funding of China Grant [20110490829]
  10. NSF Grant [DMR-0906601]

向作者/读者索取更多资源

Spontaneous symmetry breaking can lead to the formation of time crystals, as well as spatial crystals. Here we propose a space-time crystal of trapped ions and a method to realize it experimentally by confining ions in a ring-shaped trapping potential with a static magnetic field. The ions spontaneously form a spatial ring crystal due to Coulomb repulsion. This ion crystal can rotate persistently at the lowest quantum energy state in magnetic fields with fractional fluxes. The persistent rotation of trapped ions produces the temporal order, leading to the formation of a space-time crystal. We show that these space-time crystals are robust for direct experimental observation. We also study the effects of finite temperatures on the persistent rotation. The proposed space-time crystals of trapped ions provide a new dimension for exploring many-body physics and emerging properties of matter.

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