论文标题
3L-MOTE2/WSE2中的Pomeranchuk效应和可调量子相变
Pomeranchuk Effect and Tunable Quantum Phase Transitions in 3L-MoTe2/WSe2
论文作者
论文摘要
已知许多受欢迎的物质外来状态都会接近量子相变,例如量子自旋液体(QSL)和非常规的超导性。因此,希望实验探索可以在这些过渡中连续调整的系统。在这里,我们演示了这种可调节性和在三角形Mote $ _2 $和单层WSE $ _2 $(3L-MOTE $ _2 $ _2 $/WSE $ _2 $)之间形成的三角形Moiré超级晶格中的电子相关效应。通过电动运输测量值,我们牢固地建立了在第一个Moiré子带半填充时观察到的Pomeranchuk效应,在该莫伊尔子带中,温度越来越多地偶然地增强了电荷定位。该系统同时表现出具有强烈重新归一化的有效质量的费米液体的特征,表明具有相关的金属状态。该状态非常容易受到平面外电场和磁场的影响,该电场分别诱导了Lifshitz过渡和金属 - 绝缘体过渡(MIT)。它可以在基础温度下识别量子相图中的三个临界点。我们通过应用垂直电场来解释LIFSHITZ的转变,从而导致新的费米表面出现并立即抑制Pomeranchuk效应。磁性MIT磁性MIT中的量子临界值的存在得到了阻力的缩放行为的支持。我们的工作显示3L-MOTE $ _2 $/WSE $ _2 $在于三角晶格哈伯德模型的MIT点附近,它使其成为一个独特的系统,可以在中间互动强度下表现出丰富的相关效应。
Many sought-after exotic states of matter are known to emerge close to quantum phase transitions, such as quantum spin liquids (QSL) and unconventional superconductivity. It is thus desirable to experimentally explore systems that can be continuously tuned across these transitions. Here, we demonstrate such tunability and the electronic correlation effects in triangular moiré superlattices formed between trilayer MoTe$_2$ and monolayer WSe$_2$ (3L-MoTe$_2$/WSe$_2$). Through electric transport measurements, we firmly establish the Pomeranchuk effect observed at half filling of the first moiré subband, where increasing temperature paradoxically enhances charge localization. The system simultaneously exhibits the characteristic of a Fermi liquid with strongly renormalized effective mass, suggesting a correlated metal state. The state is highly susceptible to out-of-plane electric and magnetic fields, which induce a Lifshitz transition and a metal-insulator transition (MIT), respectively. It enables identification of a tricritical point in the quantum phase diagram at the base temperature. We explain the Lifshitz transition in terms of interlayer charge transfer by applying the vertical electric field, which leads to the emergence of a new Fermi surface and immediate suppression of the Pomeranchuk effect. The existence of quantum criticality in the magnetic filed induced MIT is supported by scaling behaviors of the resistance. Our work shows the 3L-MoTe$_2$/WSe$_2$ lies in the vicinity to the MIT point of the triangular lattice Hubbard model, rendering it a unique system to manifest the rich correlation effects at an intermediate interaction strength.