Polaritonic modes in low-dimensional materials enable strong light–matter interactions and the manipulation of light on nanometer length scales. Very recently, a new class of …
G Lan, L Tang, J Dong, J Nong, P Luo… - Laser & Photonics …, 2024 - Wiley Online Library
Graphene plasmonic modulators can manipulate the mid‐infrared light in transmission mode, which is currently challenging for traditional liquid crystal and digital micromirror …
X He, F Liu, F Lin, W Shi - Optics Letters, 2021 - opg.optica.org
Based on 3D Dirac-semimetal (DSM) modified hybrid waveguides, tunable propagation properties have been investigated, including the effects of Fermi levels, structural …
X He, F Liu, F Lin, W Shi - Annalen der Physik, 2022 - Wiley Online Library
The tunable propagation properties of transverse electric (TE) plasmonic modes have been investigated in the mid‐IR spectral region by using air‐Dirac semimetal (DSM)‐Si …
Orthorhombic molybdenum trioxide (α‐MoO3), a newly discovered polaritonic van der Waals crystal, is attracting significant attention due to its strongly anisotropic mid‐infrared phonon …
An acoustic plasmon mode in a graphene-dielectric-metal structure has recently been spotlighted as a superior platform for strong light-matter interaction. It originates from the …
We theoretically describe and experimentally demonstrate a graphene-integrated metasurface structure that enables electrically-tunable directional control of thermal …
Photo-modulation is a promising strategy for contactless and ultrafast control of optical and electrical properties of photoactive materials. Graphene is an attractive candidate material …
Carrier excitation and decay processes in graphene are of broad interest since relaxation pathways that are not present in conventional materials are enabled by a gapless Dirac …