A large magnetoresistance effect is obtained at room-temperature by using p-i-n armchair-graphene-nanoribbon (GNR) heterostructures. The key advantage is the virtual elimination of thermal currents due to the presence of band gaps in the contacts. The current at B=0T is greatly decreased while the current at B>0T is relatively large due to the band-to-band tunneling effects, resulting in a high magnetoresistance ratio, even at room-temperature. Moreover, we explore the effects of edge-roughness, length, and width of GNR channels on device performance. An increase in edge-roughness and channel length enhances the magnetoresistance ratio while increased channel width can reduce the operating bias.
翻译:在室温条件下,通过使用p-i-i-手持椅子-壁炉-壁炉-壁炉(GNR)外结构,取得了巨大的磁电效应。关键优势是,由于接触中存在波段间隙,热流实际上已经消除。B=0T时的电流大幅下降,而B>0T时的电流由于带带间隧道效应而相对较大,造成高磁频率,即使在室内温度下也是如此。此外,我们还探讨了GNR频道的边缘干线、长度和宽度对设备性能的影响。边缘干线和频道长度的提高会增强磁频比,而增加的频道宽度可以减少运行偏差。