Gate controlled resonant widths in double-bend waveguides: Bound states in the continuum

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Abstract

We consider quantum transmission through double-bend Π- and Z-shaped waveguides controlled by the finger gate potential. Using the effective non-Hermitian Hamiltonian approach we explain the resonances in transmission. We show a difference in transmission in the short waveguides that is the result of different chirality in Z and Π waveguides. We demonstrate that the potential selectively affects the resonant widths resulting in the occurrence of bound states in the continuum.

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Sadreev, A. F., Maksimov, D. N., & Pilipchuk, A. S. (2015). Gate controlled resonant widths in double-bend waveguides: Bound states in the continuum. Journal of Physics Condensed Matter, 27(29). https://doi.org/10.1088/0953-8984/27/29/295303

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