Nguyen Phuong X, Ma Liguo, Chaturvedi Raghav, Watanabe Kenji, Taniguchi Takashi, Shan Jie, Mak Kin Fai
School of Applied and Engineering Physics, Cornell University, Ithaca, NY, USA.
Kavli Institute at Cornell for Nanoscale Science, Ithaca, NY, USA.
Science. 2025 Apr 18;388(6744):274-278. doi: 10.1126/science.adl1829. Epub 2025 Apr 17.
Excitonic insulators (EIs) are a solid-state prototype for bosonic phases of matter that can support charge-neutral exciton currents. However, demonstration of exciton transport in EIs is difficult. In this work, we show that the strong interlayer excitonic correlation at equal electron and hole densities in MoSe/WSe double layers separated by a 2-nanometer barrier yields perfect Coulomb drag under zero magnetic field: A charge current in one layer induces an equal but opposite drag current in the other layer at low temperatures. The drag current ratio remains above 0.9 up to about 20 kelvin. As exciton density increases above the Mott density, the excitons dissociate into an electron-hole plasma abruptly, and only frictional drag is observed. Our experiment may lead to the realization of exciton circuitry and superfluidity.
激子绝缘体(EIs)是一种能够支持电荷中性激子电流的玻色子物质相的固态原型。然而,在激子绝缘体中证明激子输运是困难的。在这项工作中,我们表明,在由2纳米势垒隔开的MoSe/WSe双层中,当电子和空穴密度相等时,强层间激子相关性在零磁场下产生完美的库仑拖拽:一层中的电荷电流在低温下会在另一层中感应出大小相等但方向相反的拖拽电流。直到大约20开尔文,拖拽电流比仍保持在0.9以上。当激子密度增加到超过莫特密度时,激子会突然解离成电子 - 空穴等离子体,此时仅观察到摩擦拖拽。我们的实验可能会促成激子电路和超流性的实现。