Extremely confined gap plasmon modes: when nonlocality matters
arXiv:2111.07561 · doi:10.1038/s41467-022-30737-2
Abstract
Historically, the field of plasmonics has been relying on the framework of classical electrodynamics, with the local-response approximation of material response being applied even when dealing with nanoscale metallic structures. However, when approaching the atomic-scale confinement of the electromagnetic radiation, mesoscopic effects are anticipated to become observable, e.g., those associated with the nonlocal electrodynamic surface response of the electron gas. We investigate nonlocal effects in propagating gap surface plasmon modes in ultrathin metal--dielectric--metal planar waveguides, exploiting monocrystalline gold flakes separated by atomic-layer-deposited aluminum oxide. We use scanning near-field optical microscopy to directly access the near-field of such confined gap plasmon modes and measure their dispersion relation (via their complex-valued propagation constants). We compare our experimental findings with the predictions of the generalized nonlocal optical response theory to unveil signatures of nonlocal damping, which becomes appreciable for smaller dielectric gaps.
Supporting information is available upon request to authors
References in corpus (14)
- How to face the loss in plasmonics and metamaterials
- Atomically flat single-crystalline gold nanostructures for plasmonic nanocircuitry
- Nonlocal optical response in metallic nanostructures
- Blueshift of the surface plasmon resonance in silver nanoparticles studied with EELS
- Nonlocal Response of Metallic Nanospheres Probed by Light, Electrons, and Atoms
- Gap and channelled plasmons in tapered grooves: a review
- Hyperbolic metamaterials: nonlocal response regularizes broadband super-singularity
- Nonlocal study of ultimate plasmon hybridization
- Quantum Effects in the Acoustic Plasmons of Atomically-Thin Heterostructures
- Advanced engineering of single-crystal gold nanoantennas
- Role of diffusive surface scattering in nonlocal plasmonics
- Nonclassical optical properties of mesoscopic gold
- Ultimate limit for optical losses in gold, revealed by quantitative near-field microscopy
- Quantitative near-field characterization of surface plasmon polaritons on monocrystalline gold platelets
Cited by in corpus (6)
- Roadmap on Nonlocality in Photonic Materials and Metamaterials
- Ultimate limit for optical losses in gold, revealed by quantitative near-field microscopy
- Plasmon Polaritons in Disordered Nanoparticle Assemblies
- Nonlocal electrodynamics of two-dimensional anisotropic magneto-plasmons
- Near-field refractometry of van der Waals crystals
- Prospects to bypass nonlocal phenomena in metals using phonon-polaritons