A low-loss zero-index photonic crystal slab based on toroidal dipole mode

Author:

Li Zhifeng1,Lin Hai1,Zhou Rui1,Shi Xintong1,Yu Zihao1,Liu Y.23ORCID,Wu Jian4ORCID,Tang Rongxin5

Affiliation:

1. Central China Normal University

2. Hubei University

3. Lanzhou University

4. National University of Defense Technology

5. Institute of Space Science and Technology, Nanchang University

Abstract

Zero-index medium has profound application for light manipulation. Certain types of dielectric photonic crystals (PCs) may have zero effective index since they form Dirac cone at the Γ point of their band structure. Although zero index photonic crystals provide a solution to impedance mismatch in photonic integrated circuits, its propagation modes strongly radiate to the surrounding environment, which hampers their application for high-density integration. In this paper, by an appropriate design of PC’s unit cell, toroidal dipole mode is excited at Dirac-point frequency through coupled Mie resonance to suppress radiative losses of other multipoles. The PCs with the Dirac-like dispersion at the Γ point can be mapped to an effective zero-index medium. The physical mechanism was utterly investigated by means of multipole decomposition and band structure analysis. Due to the non-radiation property of the toroidal dipole mode, the proposed photonic crystal slab process is low-loss based on numerical simulation. Moreover, its relatively simple design facilitates integration with future quantum photonic devices.

Funder

Educational Commission of Hubei Province of China

Department of Education in Hubei Province

Science and Technology Department of Hubei Province

National Natural Science Foundation of China

Young Scientists Fund

The fund of Hongque Innovation Center

Guangxi Key Laboratory of Wireless Wideband Communication and Signal Processing, Guilin University of Electronic Technology

Fundamental Research Funds for the Central Universities

Publisher

Optica Publishing Group

Subject

Atomic and Molecular Physics, and Optics

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