arXiv · 1911.01069
Topological Gaseous Plasmon Polariton in Realistic Plasma
Abstract
Nontrivial topology in bulk matter has been linked with the existence of topologically protected interfacial states. We show that a gaseous plasmon polariton (GPP), an electromagnetic surface wave existing at the boundary of magnetized plasma and vacuum, has a topological origin that arises from the nontrivial topology of magnetized plasma. Because a gaseous plasma cannot sustain a sharp interface with discontinuous density, one must consider a gradual density falloff with scale length comparable or longer than the wavelength of the wave. We show that the GPP may be found within a gapped spectrum in present-day laboratory devices, suggesting that platforms are currently available for experimental investigation of topological wave physics in plasmas.
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Jeffrey B. Parker, J. B. Marston, Steven M. Tobias, Ziyan Zhu. 2020-05-12. Topological Gaseous Plasmon Polariton in Realistic Plasma. https://doi.org/10.1103/physrevlett.124.195001
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