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10.1038/srep10787

http://scihub22266oqcxt.onion/10.1038/srep10787
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C4466589!4466589!26074169
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suck abstract from ncbi


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pmid26074169      Sci+Rep 2015 ; 5 (ä): ä
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  • Anderson localization and Mott insulator phase in the time domain #MMPMID26074169
  • Sacha K
  • Sci Rep 2015[]; 5 (ä): ä PMID26074169show ga
  • Particles in space periodic potentials constitute standard models for investigation of crystalline phenomena in solid state physics. Time periodicity of periodically driven systems is a close analogue of space periodicity of solid state crystals. There is an intriguing question if solid state phenomena can be observed in the time domain. Here we show that wave-packets localized on resonant classical trajectories of periodically driven systems are ideal elements to realize Anderson localization or Mott insulator phase in the time domain. Uniform superpositions of the wave-packets form stationary states of a periodically driven particle. However, an additional perturbation that fluctuates in time results in disorder in time and Anderson localization effects emerge. Switching to many-particle systems we observe that depending on how strong particle interactions are, stationary states can be Bose-Einstein condensates or single Fock states where definite numbers of particles occupy the periodically evolving wave-packets. Our study shows that non-trivial crystal-like phenomena can be observed in the time domain.
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