Park Hyosub, Park Noejung, Lee JaeDong
Department of Physics and Chemistry, DGIST, Daegu 42988, Republic of Korea.
Department of Physics. Graduate School of Semiconductor Materials and Device Engineering, UNIST, Ulsan 44919, Republic of Korea.
Nano Lett. 2024 Oct 23;24(42):13192-13199. doi: 10.1021/acs.nanolett.4c03100. Epub 2024 Oct 9.
Coulomb exchange between distinct electron-hole modes, i.e., exciton and Floquet states, in two-dimensional semiconductors is explored. Coherent ultrafast mixing of the exciton and Floquet states under weak optical pumping is investigated through a theoretical description of time-resolved and angle-resolved photoemission spectroscopy (tr-ARPES) in an extended Haldane model that includes the electron-hole Coulomb interaction. Two branches of novel quantum states are found in the form of bosonic exciton-Floquet composites, which result from exchange coupling due to the Coulomb interaction. Furthermore, tr-ARPES could be directly employed for the density matrix element of the biparticle subsystem of photoelectron and hole, and electron-hole entanglement and information could be further explored. This finding suggests a unique platform to study the buildup and dephasing of novel exciton-Floquet composites and to resolve the information carried by them, which would enable the pursuit of new reconfigurable devices based on two-dimensional semiconductors.
研究了二维半导体中不同电子 - 空穴模式(即激子和弗洛凯态)之间的库仑交换。通过在包含电子 - 空穴库仑相互作用的扩展霍尔丹模型中对时间分辨和角分辨光电子能谱(tr - ARPES)进行理论描述,研究了弱光泵浦下激子和弗洛凯态的相干超快混合。发现了以玻色子激子 - 弗洛凯复合体形式存在的两个新型量子态分支,这是由库仑相互作用引起的交换耦合导致的。此外,tr - ARPES可直接用于光电子和空穴双粒子子系统的密度矩阵元,进而进一步探索电子 - 空穴纠缠和信息。这一发现为研究新型激子 - 弗洛凯复合体的形成和退相以及解析它们所携带的信息提供了一个独特的平台,这将有助于开发基于二维半导体的新型可重构器件。