Li J I A, Taniguchi T, Watanabe K, Hone J, Levchenko A, Dean C R
Department of Physics, Columbia University, New York, New York 10027, USA.
National Institute for Materials Science, 1-1 Namiki, Tsukuba, Japan.
Phys Rev Lett. 2016 Jul 22;117(4):046802. doi: 10.1103/PhysRevLett.117.046802. Epub 2016 Jul 18.
We report on an experimental measurement of Coulomb drag in a double quantum well structure consisting of bilayer-bilayer graphene, separated by few layer hexagonal boron nitride. At low temperatures and intermediate densities, a novel negative drag response with an inverse sign is observed, distinct from the momentum and energy drag mechanisms previously reported in double monolayer graphene. By varying the device aspect ratio, the negative drag component is suppressed and a response consistent with pure momentum drag is recovered. In the momentum drag dominated regime, excellent quantitative agreement with the density and temperature dependence predicted for double bilayer graphene is found.
我们报告了在由双层双层石墨烯组成、被几层六方氮化硼隔开的双量子阱结构中对库仑拖拽的实验测量。在低温和中等密度下,观察到一种具有相反符号的新型负拖拽响应,这与先前在双层单层石墨烯中报道的动量和能量拖拽机制不同。通过改变器件的纵横比,负拖拽分量受到抑制,恢复了与纯动量拖拽一致的响应。在动量拖拽主导的区域,发现与双层双层石墨烯预测的密度和温度依赖性具有出色的定量一致性。