Realization of Jackiw–Rebbi zero-energy modes at photonic crystal domain walls: Emergence of polarization-indiscriminate surface states

Author:

Gupta Nitish Kumar1ORCID,Srinivasu Sapireddy2,Kumar Mukesh3ORCID,Tiwari Anjani Kumar45ORCID,Pal Sudipta Sarkar3ORCID,Wanare Harshawardhan26ORCID,Ramakrishna S. Anantha36ORCID

Affiliation:

1. Department of Electrical Engineering, Indian Institute of Technology Kanpur 1 , Kanpur 208016, India

2. Centre for Lasers and Photonics, Indian Institute of Technology Kanpur 2 , Kanpur 208016, India

3. CSIR-Central Scientific Instruments Organisation 3 , Chandigarh 160030, India

4. Department of Physics, Indian Institute of Technology Roorkee 4 , Roorkee 247667, India

5. Center for Photonics and Quantum Communication Technology, Indian Institute of Technology Roorkee 5 , Roorkee 247667, India

6. Department of Physics, Indian Institute of Technology Kanpur 6 , Kanpur 208016, India

Abstract

The Jackiw–Rebbi model is a relativistic quantum model credited with the theoretical predictions of zero-energy bound states and charge fractionalization prior to the discovery of topological insulators and the fractional quantum Hall effect. In this work, we demonstrate a photonic equivalent of the Jackiw–Rebbi model by resorting to photonic crystal band structure engineering. Specifically, our photonic realization employs two spatial inversion symmetric binary photonic crystals exhibiting complementary signs of differential effective mass parameter (δm) for their second bandgaps. Their concatenation manifests a step discontinuity in the spatial profile of the effective mass parameter, forming a domain wall at the photonic crystal interface. Upon analyzing the reflectance spectra of the concatenated photonic crystal structure, we find a midgap surface state localized at this domain wall. Furthermore, much in agreement with the Jackiw–Rebbi zero-energy solution, the materialized photonic surface state also exhibits a zero-energy character in a differential energy space corresponding to the δm parameter, which has been quantified experimentally. Crucially, the conceived zero-energy mode amounts to the observation of a peculiar surface state with polarization-indiscriminate dispersion that can help realize all-angle polarization neutral optics.

Publisher

AIP Publishing

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