In this work, we use Wannier functions to analyze topological phase transitions in one dimensional photonic crystals. We first review the construction of exponentially localized Wannier functions in one dimension, and show how to numerically construct them for photonic systems. We then apply these tools to study a photonic analog of the Su-Schrieffer-Heeger model. We use photonic Wannier functions to construct a quantitatively accurate approximate model for the topological phase transition, and compute the localization of topological defect states. Finally, we discuss the implications of our work for the study of band representations for photonic crystals.Comment: v2. Accepted version. v1. 17 pages, 13 figure
Material topology is an exotic degree of freedom in the condensed matter physics. It was initially p...
6 pags., 4 figs.We characterize topological phases in photonic lattices by unveiling a formal equiva...
© 2014 Optical Society of America. We present a cluster coherent potential approach for disordered p...
We present an approach for the efficient generation of Wannier functions for Photonic Crystal comput...
We introduce a novel approach to the accurate and efficient calculation of the optical properties of...
We report on the generation of maximally localized photonic Wannier functions under constraints. Thi...
We present a novel approach for the accurate and efficient modeling of photonic crystal-based integr...
In this paper we study the formation of topological Tamm states at the interface between a semi-infi...
We present a novel approach for the accurate and efficient modeling of photonic crystal-based integr...
Photonic crystals represent a novel platform for the realization of integrated photonic circuits wit...
Photonic topological materials with a broken time-reversal symmetry are characterized by nontrivial ...
We present a simple procedure to obtain the maximally localized Wannier function of isolated bands i...
This is the final version of the article. Available from American Physical Society via the DOI in th...
The bulk-edge correspondence links the Chern topological numbers with the net number of unidirection...
This work presents an introduction into the theory of Wannier functions applied to Photonic Crystals...
Material topology is an exotic degree of freedom in the condensed matter physics. It was initially p...
6 pags., 4 figs.We characterize topological phases in photonic lattices by unveiling a formal equiva...
© 2014 Optical Society of America. We present a cluster coherent potential approach for disordered p...
We present an approach for the efficient generation of Wannier functions for Photonic Crystal comput...
We introduce a novel approach to the accurate and efficient calculation of the optical properties of...
We report on the generation of maximally localized photonic Wannier functions under constraints. Thi...
We present a novel approach for the accurate and efficient modeling of photonic crystal-based integr...
In this paper we study the formation of topological Tamm states at the interface between a semi-infi...
We present a novel approach for the accurate and efficient modeling of photonic crystal-based integr...
Photonic crystals represent a novel platform for the realization of integrated photonic circuits wit...
Photonic topological materials with a broken time-reversal symmetry are characterized by nontrivial ...
We present a simple procedure to obtain the maximally localized Wannier function of isolated bands i...
This is the final version of the article. Available from American Physical Society via the DOI in th...
The bulk-edge correspondence links the Chern topological numbers with the net number of unidirection...
This work presents an introduction into the theory of Wannier functions applied to Photonic Crystals...
Material topology is an exotic degree of freedom in the condensed matter physics. It was initially p...
6 pags., 4 figs.We characterize topological phases in photonic lattices by unveiling a formal equiva...
© 2014 Optical Society of America. We present a cluster coherent potential approach for disordered p...