Department of Applied Physics, Aalto University, 02150 Espoo, Finland.
Fisika Aplikatua Saila, Gipuzkoako Ingeniaritza Eskola, University of the Basque Country (UPV/EHU), 20018 San Sebastián, Spain.
Nano Lett. 2023 Mar 8;23(5):1794-1800. doi: 10.1021/acs.nanolett.2c04584. Epub 2023 Feb 24.
VSe is a layered compound that has attracted great attention due to its proximity to a ferromagnetic state that is quenched by its charge density wave (CDW) phase. In the monolayer limit, unrelated experiments have reported different CDW orders with different transition temperatures, making this monolayer very controversial. Here we perform first-principles nonperturbative anharmonic phonon calculations in monolayer VSe in order to estimate the CDW order and the corresponding transition temperature. They reveal that monolayer VSe develops two independent charge density wave orders that compete as a function of strain. Variations of only 1.5% in the lattice parameter are enough to stabilize one order or the other. Moreover, we analyze the impact of external Lennard-Jones interactions, showing that these can act together with anharmonicity to suppress the CDW orders. Our results solve previous experimental contradictions, highlighting the high tunability and substrate dependency of the CDW orders of monolayer VSe.
VSe 是一种分层化合物,由于其接近被其电荷密度波 (CDW) 相淬火的铁磁状态,因此引起了极大的关注。在单层极限下,无关的实验报告了具有不同转变温度的不同 CDW 顺序,这使得这种单层非常有争议。在这里,我们在单层 VSe 中进行了第一性原理非微扰非谐声子计算,以估算 CDW 顺序和相应的转变温度。它们表明,单层 VSe 发展出两种独立的电荷密度波顺序,这些顺序作为应变的函数相互竞争。晶格参数仅变化 1.5%就足以稳定一种或另一种顺序。此外,我们分析了外部 Lennard-Jones 相互作用的影响,表明这些相互作用可以与非谐性一起抑制 CDW 顺序。我们的结果解决了先前实验上的矛盾,突出了单层 VSe 的 CDW 顺序的高可调节性和衬底依赖性。