arXiv · 1811.11917
Zero-index bound states in the continuum
Abstract
Metamaterials with an effective zero refractive index associated to their electromagnetic response are sought for a number of applications in communications and nonlinear optics. A promising way that this can be achieved in all-dielectric photonic crystals is through the design of a Dirac cone at zero Bloch wave-vector in the photonic band structure. In the optical frequency range, the natural way to implement this design is through the use of a photonic crystal slab. In the existing implementation, however, the zero-index photonic modes also radiate strongly into the environment due to intrinsic symmetry properties. This has resulted in large losses in recent experimental realizations of this zero-index paradigm. Here, we propose a photonic crystal slab with zero-index modes which are also symmetry-protected bound states in the continuum. Our approach thus eliminates the associated radiation loss. This could enable, for the first time, large-scale integration of zero-index materials in photonic devices.
Explore related subjects
Keep this discovery
Momchil Minkov, Ian A. D. Williamson, Meng Xiao, Shanhui Fan. 2018-11-29. Zero-index bound states in the continuum. https://doi.org/10.1103/physrevlett.121.263901
Cite the original work for its findings. Save a collection to share your selection of sources.