paper

Breakdown of spin-to-helicity locking at the nanoscale in topological photonic crystal edge states

arXiv:2202.04402 · doi:10.1103/PhysRevLett.128.203903

Abstract

We measure the local near-field spin in topological edge state waveguides that emulate the quantum spin Hall effect. We reveal a highly structured spin density distribution that is not linked to a unique pseudospin value. From experimental near-field real-space maps and numerical calculations, we confirm that this local structure is essential in understanding the properties of optical edge states and light-matter interactions. The global spin is reduced by a factor of 30 in the near field and, for certain frequencies, flipped compared to the pseudospin measured in the far-field. We experimentally reveal the influence of higher-order Bloch harmonics in spin inhomogeneity, leading to a breakdown in the coupling between local helicity and global spin.

6 pages, 5 figures, 50 references

References in corpus (10)

Breakdown of spin-to-helicity locking at the nanoscale in topological photonic crystal edge states · wovepaper