Nonlinearly PT-symmetric systems: Spontaneous symmetry breaking and transmission resonances

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Abstract

We consider a class of PT-symmetric systems which include mutually matched nonlinear loss and gain (in other words, a class of PT-invariant Hamiltonians in which both the harmonic and anharmonic parts are non-Hermitian). For a basic system in the form of a dimer, symmetric and asymmetric eigenstates, including multistable ones, are found analytically. We demonstrate that, if coupled to a linear chain, such a nonlinear PT-symmetric dimer generates previously unexplored types of nonlinear Fano resonances, with completely suppressed or greatly amplified transmission, as well as a regime similar to the electromagnetically induced transparency. The implementation of the systems is possible in various media admitting controllable linear and nonlinear amplification of waves. © 2011 American Physical Society.

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Miroshnichenko, A. E., Malomed, B. A., & Kivshar, Y. S. (2011). Nonlinearly PT-symmetric systems: Spontaneous symmetry breaking and transmission resonances. Physical Review A - Atomic, Molecular, and Optical Physics, 84(1). https://doi.org/10.1103/PhysRevA.84.012123

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