Quantum electrodynamics in a topological metamaterial: Part 1
ORAL
Abstract
The rich quantum electrodynamical properties arising from topological photonics open new possibilities for studying novel many-body states and implementing topologically protected quantum information processing protocols. It has been recently suggested that a topological waveguide, which realizes a photonic analog of the Su-Schrieffer-Heeger (SSH) model, can host unconventional quantum optical phenomena [Sci. Adv. 5, eaaw0297 (2019)]. We discuss the implementation of the topological waveguide with superconducting metamaterials. We explore the exotic properties of qubit-photon bound states and topological edge states emergent in this system.
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Presenters
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Eun Jong Kim
Caltech
Authors
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Eun Jong Kim
Caltech
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Xueyue Zhang
Caltech
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Alp Sipahigil
Caltech
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Vinicius S Ferreira
Caltech
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Jash Banker
Caltech
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Mohammad Mirhosseini
Caltech
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Oskar Painter
Applied Physics and Material Science, Caltech, Caltech