4.6 Article

Asymmetric wave propagation through nonlinear PT-symmetric oligomers

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IOP PUBLISHING LTD
DOI: 10.1088/1751-8113/45/44/444012

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资金

  1. US-NSF [DMS-0806762, CMMI-1000337]
  2. Alexander von Humboldt Foundation
  3. Alexander S Onassis Public Benefit Foundation [RZG 003/2010-2011]
  4. Binational Science Foundation [2010239]
  5. Miur
  6. Div Of Civil, Mechanical, & Manufact Inn
  7. Directorate For Engineering [1000337] Funding Source: National Science Foundation

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In the present paper, we consider nonlinear PT-symmetric dimers and trimers (more generally, oligomers) embedded within a linear Schrodinger lattice. We examine the stationary states of such chains in the form of plane waves, and analytically compute their reflection and transmission coefficients through the nonlinear PT symmetric oligomer, as well as the corresponding rectification factors which clearly illustrate the asymmetry between left and right propagation in such systems. We examine not only the existence but also the dynamical stability of the plane wave states and interestingly find them to be unstable except in the vicinity of the linear limit. Lastly, we generalize our numerical considerations to the more physically relevant case of Gaussian initial wavepackets and confirm that the asymmetry in the transmission properties persists in the case of such wavepackets, as well. The role of potential asymmetries in the nonlinearity or in the gain/loss pattern is also considered.

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