Wang Hao, Zhao Hua, Hu Guangwei, Li Siren, Su Hang, Zhang Jingwen
Institute of Modern Optics, Department of Physics, Harbin Institute of Technology, Harbin, 150001, China.
Key Laboratory of Micro-Optics and Photonics Technology of Heilongjiang Province, Harbin, 150001, China.
Sci Rep. 2015 Dec 14;5:18258. doi: 10.1038/srep18258.
We proposed a ferroelectric domain controlled graphene based surface plasmon polariton modulator. Ferroelectricity-induced electronic and optical property tuning of graphene by domain in lithium niobate was theoretically investigated considering both interband and intraband contributions of surface conductivity. With the corrected Sellmeier equation of lithium niobate, the propagation of transverse magnetic mode surface plasmon polaritons in an air/graphene/lithium niobate structure was studied when monolayer graphene was tuned by down polarization direction ferroelectric domain with different polarization levels. The length of the ferroelectric domain was optimized to be 90 nm for a wavelength of 5.0 μm with signal extinction per unit 14.7 dB/μm, modulation depth 474.1 dB/μm and figure of merit 32.5. This work may promote the study of highly efficient modulators and other ultra-compact nonvolatile electronic and photonic devices in which two-dimensional materials and ferroelectric materials are combined.
我们提出了一种基于铁电畴控制石墨烯的表面等离激元极化激元调制器。考虑到表面电导率的带间和带内贡献,从理论上研究了铌酸锂中铁电畴对石墨烯电学和光学性质的调控。利用修正后的铌酸锂Sellmeier方程,研究了在空气/石墨烯/铌酸锂结构中,当单层石墨烯由具有不同极化水平的向下极化方向铁电畴调控时,横磁模表面等离激元极化激元的传播情况。对于波长为5.0μm的情况,将铁电畴的长度优化为90nm,此时单位信号消光为14.7dB/μm,调制深度为474.1dB/μm,品质因数为32.5。这项工作可能会推动高效调制器以及其他二维材料与铁电材料相结合的超紧凑非易失性电子和光子器件的研究。