Parametric Disordering-Driven Topological Transitions in a Liquid Metacrystal
- Authors: Zharov A.A.1, Zharov A.A.1, Zharova N.A.1,2
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Affiliations:
- Institute for Physics of Microstructures
- Institute of Applied Physics
- Issue: Vol 107, No 6 (2018)
- Pages: 373-378
- Section: Condensed Matter
- URL: https://journals.rcsi.science/0021-3640/article/view/160840
- DOI: https://doi.org/10.1134/S0021364018060036
- ID: 160840
Cite item
Abstract
We show that an amplitude-modulated electromagnetic wave incident onto a liquid metacrystal (LMC) may cause parametric instability of meta-atoms’ mechanical oscillations. It results in either phase-coherent motion of the meta-atoms (leading to time-dependent components of LMC dielectric tensor) or chaotic isotropization of the medium that can be treated in terms of effective temperature. Both scenarios enable switching of the sign of certain components of permittivity tensor that, in turn, modifies the topology of isofrequency surface. Thus, the topological transition in LMC is expected to have an oscillatory or quasi-thermal character depending on the parameters, but in any case, the change of topology leads to dramatic changes of the medium properties, switching the LMC between the transparent and opaque states.
About the authors
A. A. Zharov
Institute for Physics of Microstructures
Email: zhani@appl.sci-nnov.ru
Russian Federation, Nizhny Novgorod, 603950
A. A. Zharov
Institute for Physics of Microstructures
Email: zhani@appl.sci-nnov.ru
Russian Federation, Nizhny Novgorod, 603950
N. A. Zharova
Institute for Physics of Microstructures; Institute of Applied Physics
Author for correspondence.
Email: zhani@appl.sci-nnov.ru
Russian Federation, Nizhny Novgorod, 603950; Nizhny Novgorod, 603950
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