| Literature DB >> 29345625 |
Feiying Sun1, Liangping Xia, Changbin Nie, Jun Shen, Yixuan Zou, Guiyu Cheng, Hao Wu, Yong Zhang, Dongshan Wei, Shaoyun Yin, Chunlei Du.
Abstract
All-optical modulators based on graphene show great promise for on-chip optical interconnects. However, the modulation performance of all-optical modulators is usually based on the interaction between graphene and the fiber, limiting their potential in high integration. Based on this point, an all-optical modulator in a dielectric-loaded waveguide (DLW) with a graphene-silicon heterojunction structure (GSH) is proposed. The DLW raises the waveguide mode, which provides a strong light-graphene interaction. Sufficient tuning of the graphene Fermi energy beyond the Pauli blocking effect is obtained with the presented GSH structure. Under the modulation light with a wavelength of 532 nm and a power of 60 mW, a modulation efficiency of 0.0275 dB µm-1 is achieved for light with a communication wavelength of 1.55 µm in the experiment. This modulator has the advantage of having a compact footprint, which may make it a candidate for achieving a highly integrated all-optical modulator.Entities:
Year: 2018 PMID: 29345625 DOI: 10.1088/1361-6528/aaa8be
Source DB: PubMed Journal: Nanotechnology ISSN: 0957-4484 Impact factor: 3.874