Department of Physics, Massachusetts Institute of Technology , Cambridge, Massachusetts 02139, United States.
Nano Lett. 2015 Mar 11;15(3):1451-6. doi: 10.1021/nl502522q. Epub 2015 Feb 16.
Transport in photoactive graphene heterostructures, originating from the dynamics of photogenerated hot carriers, is governed by the processes of thermionic emission, electron-lattice thermal imbalance, and cooling. These processes give rise to interesting photoresponse effects, in particular negative differential resistance (NDR) arising in the hot-carrier regime. The NDR effect stems from a strong dependence of electron-lattice cooling on the carrier density, which results in the carrier temperature dropping precipitously upon increasing bias. The ON-OFF switching between the NDR regime and the conventional cold emission regime, as well as the gate-controlled closed-circuit current that is present at zero bias voltage, can serve as signatures of hot-carrier dominated transport.
光活性石墨烯异质结构中的输运,源于光生热载流子的动力学,受到热电子发射、电子-晶格热不平衡和冷却过程的控制。这些过程产生了有趣的光响应效应,特别是在热载流子区域出现的负微分电阻(NDR)。NDR 效应源于电子-晶格冷却对载流子密度的强烈依赖性,这导致在增加偏压时载流子温度急剧下降。NDR 区域与传统冷发射区域之间的 ON-OFF 切换,以及在零偏压下存在的栅控闭路电流,可以作为热载流子主导输运的特征。