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Broadly tunable graphene plasmons using an ion-gel top gate with low control voltage

机译:使用一个ion-gel广泛可调石墨烯等离子体门控制电压较低

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The electrostatic tunability of graphene is vital in the field of active plasmons and would be beneficial in tunable infrared and terahertz optical element applications. The key to realizing broad tunability is achieving high carrier densities in graphene. Here we use an ion-gel, currently one of the most efficient dielectrics with ultra-high capacitance, to realize broadly tunable graphene plasmons (similar to 1270 cm(-1)) with low voltage modulation (similar to 4 V shifted from the Dirac point). We further explore the coupling between graphene plasmons and the molecular vibration modes of the ion-gel, since strong plasmon-phonon coupling can split the plasmon resonance peak into multi-peaks and reduce their tunability. Our experiments demonstrate weak plasmon-phonon coupling in the graphene/ion-gel system, which has limited effects on plasmon properties. These properties make ion-gels an effective dielectric for broadly tunable graphene plasmonic devices, such as new optical modulators, filters and wavelength multiplexers.
机译:石墨烯的静电可调谐性是至关重要的活跃的等离子体和领域的在可调红外和太赫兹有益光学元件的应用。实现广泛的可调谐性是实现高石墨烯的载流子密度。ion-gel,目前效率最高的国家之一电介质与超高电容实现广泛可调的石墨烯等离子体(类似于1270厘米(1))与低电压调制(类似于4 V狄拉克的转移点)。石墨烯等离子体和分子振动ion-gel的模式,因为plasmon-phonon强劲等离子体共振峰值的耦合可以分裂到多峰和减少他们的可调性。实验证明弱plasmon-phonon石墨烯/ ion-gel系统耦合,限制了对等离子体特性的影响。使ion-gels有效介电性质对于广泛可调石墨烯电浆设备,如新光学调节器、过滤器和波长多工器。

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