Logo image
Pseudospin-2 in photonic chiral borophene
Journal article   Peer reviewed

Pseudospin-2 in photonic chiral borophene

Philip Menz, Haissam Hanafi, Daniel Leykam, Jorg Imbrock and Cornelia Denz
Photonics research (Washington, DC), Vol.11(5), pp.869-877
01/05/2023

Abstract

Optics Physical Sciences Science & Technology
Pseudospin is an angular momentum degree of freedom introduced in analogy to the real electron spin in the effective massless Dirac-like equation used to describe wave evolution at conical intersections such as the Dirac cones of graphene. Here, we study a photonic implementation of a chiral borophene allotrope hosting a pseudospin-2 conical intersection in its energy-momentum spectrum. The presence of this fivefold spectral degeneracy gives rise to quasiparticles with pseudospin up to +/- 2. We report on conical diffraction and pseudospin-orbit interaction of light in photonic chiral borophene, which, as a result of topological charge conversion, leads to the generation of highly charged optical phase vortices.

Metrics

1 Record Views

Details

Logo image