Balci Sinan, Balci Osman, Kakenov Nurbek, Atar Fatih Bilge, Kocabas Coskun
Opt Lett. 2016 Mar 15;41(6):1241-4. doi: 10.1364/OL.41.001241.
We report active electrical tuning of plasmon resonance of silver nanoprisms (Ag NPs) in the visible spectrum. Ag NPs are placed in close proximity to graphene which leads to additional tunable loss for the plasmon resonance. The ionic gating of graphene modifies its Fermi level from 0.2 to 1 eV, which then affects the absorption of graphene due to Pauli blocking. Plasmon resonance frequency and linewidth of Ag NPs can be reversibly shifted by 20 and 35 meV, respectively. The coupled graphene-Ag NPs system can be classically described by a damped harmonic oscillator model. Atomic layer deposition allows for controlling the graphene-Ag NP separation with atomic-level precision to optimize coupling between them.
我们报道了在可见光谱中对银纳米棱镜(Ag NPs)的等离子体共振进行主动电调谐。将Ag NPs放置在靠近石墨烯的位置,这会导致等离子体共振产生额外的可调损耗。石墨烯的离子门控将其费米能级从0.2 eV改变到1 eV,进而由于泡利阻塞影响石墨烯的吸收。Ag NPs的等离子体共振频率和线宽可分别可逆地移动20 meV和35 meV。耦合的石墨烯-Ag NPs系统可以用阻尼谐振子模型进行经典描述。原子层沉积能够以原子级精度控制石墨烯与Ag NPs之间的间距,从而优化它们之间的耦合。