» Articles » PMID: 21972938

Infrared Nanoscopy of Dirac Plasmons at the Graphene-SiO₂ Interface

Abstract

We report on infrared (IR) nanoscopy of 2D plasmon excitations of Dirac fermions in graphene. This is achieved by confining mid-IR radiation at the apex of a nanoscale tip: an approach yielding 2 orders of magnitude increase in the value of in-plane component of incident wavevector q compared to free space propagation. At these high wavevectors, the Dirac plasmon is found to dramatically enhance the near-field interaction with mid-IR surface phonons of SiO(2) substrate. Our data augmented by detailed modeling establish graphene as a new medium supporting plasmonic effects that can be controlled by gate voltage.

Citing Articles

Real-space imaging of confined infrared surface plasmon polaritons on doped semiconductors covered with phase-change materials.

Conrads L, Schuler L, Wirth K, Cleri A, Hessler A, Jung L Sci Adv. 2025; 11(6):eadr6844.

PMID: 39919187 PMC: 11804914. DOI: 10.1126/sciadv.adr6844.


Decoupling Carrier Dynamics and Energy Transport in Ultrafast Near-Field Nanoscopy.

Yang R, Li R, Blankenship B, Li J, Grigoropoulos C Nano Lett. 2025; 25(6):2242-2247.

PMID: 39805036 PMC: 11827107. DOI: 10.1021/acs.nanolett.4c05419.


Spacetime Imaging of Group and Phase Velocities of Terahertz Surface Plasmon Polaritons in Graphene.

Anglhuber S, Zizlsperger M, Pogna E, Gerasimenko Y, Koulouklidis A, Gronwald I Nano Lett. 2025; 25(6):2125-2132.

PMID: 39746211 PMC: 11827103. DOI: 10.1021/acs.nanolett.4c04615.


Modeling Carbon-Based Nanomaterials (CNMs) and Derived Composites and Devices.

Chiminelli A, Radovic I, Fasano M, Fantoni A, Laspalas M, Kalinic A Sensors (Basel). 2024; 24(23).

PMID: 39686202 PMC: 11645012. DOI: 10.3390/s24237665.


Phonon-Induced Wake Potential in a Graphene-Insulator -Graphene Structure.

Kalinic A, Radovic I, Karbunar L, Despoja V, Miskovic Z Nanomaterials (Basel). 2024; 14(23).

PMID: 39683339 PMC: 11643178. DOI: 10.3390/nano14231951.