The Key Laboratory of Weak-Light Nonlinear Photonics, Ministry of Education, School of Physics and TEDA Applied Physics Institute, Nankai University, Tianjin, 300457, China.
Adv Mater. 2017 Aug;29(30). doi: 10.1002/adma.201701083. Epub 2017 Jun 12.
Graphene plasmons provide great opportunities in light-matter interactions benefiting from the extreme confinement and electrical tunability. Structured graphene cavities possess enhanced confinements in 3D and steerable plasmon resonances, potential in applications for sensing and emission control at the nanoscale. Besides graphene boundaries obtained by mask lithography, graphene defects engineered by ion beams have shown efficient plasmon reflections. In this paper, near-field responses of structured graphene achieved by ion beam direct-writing are investigated. Graphene nanoresonators are fabricated easily and precisely with a spatial resolution better than 30 nm. Breathing modes are observed in graphene disks. The amorphous carbons around weaken the response of edge modes in the resonators, but meanwhile render the isolated resonators in-plane electrical connections, where near-fields are proved gate-tunable. The realization of gate-tunable near-fields of graphene 2D resonators opens up tunable near-field couplings with matters. Moreover, graphene nonconcentric rings with engineered near-field confinement distributions are demonstrated, where the quadrupole plasmon modes are excited. Near-field mappings reveal concentrations at the scale of 3.8×10-4λ02 within certain zones which can be engineered. The realization of electrically tunable graphene nanoresonators by ion beam direct-writing is promising for active manipulation of emission and sensing at the nanoscale.
石墨烯等离激元提供了从极端约束和电可调性中受益的光物质相互作用的巨大机会。结构化石墨烯腔具有增强的三维约束和可控制的等离激元共振,有潜力应用于纳米尺度的传感和发射控制。除了通过掩模光刻获得的石墨烯边界之外,离子束工程化的石墨烯缺陷也显示出有效的等离激元反射。在本文中,研究了离子束直写实现的结构化石墨烯的近场响应。石墨烯纳米谐振器可以通过空间分辨率优于 30nm 的方法精确地制作。在石墨烯盘上观察到呼吸模式。谐振器边缘模式的响应被周围的非晶碳削弱,但同时使孤立的谐振器在平面内具有电连接,其中近场被证明是可门控的。石墨烯二维谐振器的可调谐近场的实现为可调谐近场与物质的耦合开辟了道路。此外,还演示了具有工程化近场约束分布的石墨烯非同心环,激发了四极等离激元模式。近场映射揭示了在一定范围内(可以进行工程设计)的 3.8×10-4λ02 量级的浓度。通过离子束直写实现的电可调谐石墨烯纳米谐振器有望在纳米尺度上对发射和传感进行主动操控。