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Low dimensional systems
Topological modes in non-hermitian phononic crystals optically induced in a quantum-well array
A. V. Poshakinskii, A. N. Poddubnyi Ioffe Institute, St. Petersburg, Russia
Abstract:
We study theoretically propagation of acoustic waves in an array of quantum wells, where a spatially modulated amplification and attenuation of sound is realized by optical excitation with a frequency close to the exciton resonance. The dispersion of sound waves near Bragg resonances corresponding to the modulation wave vector is calculated. The appearance of “imaginary” stop bands, where the imaginary parts of the Bloch mode frequencies are split, is described. The emergence of acoustic topological modes at the edge of the structure is demonstrated.
Keywords:
quantum well structures, acoustic phonons, optomechanics.
Received: 01.12.2020 Revised: 01.12.2020 Accepted: 03.12.2020
Citation:
A. V. Poshakinskii, A. N. Poddubnyi, “Topological modes in non-hermitian phononic crystals optically induced in a quantum-well array”, Fizika Tverdogo Tela, 63:4 (2021), 538–544; Phys. Solid State, 63:4 (2021), 621–627
Linking options:
https://www.mathnet.ru/eng/ftt8154 https://www.mathnet.ru/eng/ftt/v63/i4/p538
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Abstract page: | 58 | Full-text PDF : | 22 |
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