论文标题
椭圆石墨烯/WSE2异质结构量子点中的分子塌陷状态
Molecular Collapse States in Elliptical Graphene/WSe2 Heterostructure Quantum Dots
论文作者
论文摘要
在相对论物理学中,预计重核中的原子塌陷和黑洞中的霍金辐射都可以通过klein隧道过程发生,这些过程将颗粒和反粒子伴侣。最近,由于具有较大的细胞结构常数,原子崩溃状态(ACS)在石墨烯中明确实现。然而,在实验中,克莱因隧道在ACSS上的基本作用仍然难以捉摸。在这里,我们系统地研究了椭圆形石墨烯量子点(GQDS)中的准国家。在椭圆形的GQD中观察到由两个耦合ACS形成的键合和抗体分子塌陷态。我们的实验得到了理论计算的支持,表明ACS的抗抑制状态将变成klein隧道诱导的quasibound状态,从而揭示了ACSS与Klein隧道之间的深厚联系。
In relativistic physics, both atomic collapse in heavy nucleus and Hawking radiation in black hole are predicted to occur through Klein tunneling process that couples particles and antiparticles. Recently, atomic collapse states (ACSs) were explicitly realized in graphene because of its relativistic Dirac excitation with large fine structure constant. However, essential role of the Klein tunneling on the ACSs remains elusive in experiment. Here we systematically study the quasibound states in elliptical graphene quantum dots (GQDs). Bonding and antibonding molecular collapse states formed by two coupled ACSs are observed in the elliptical GQDs. Our experiments, supported by theoretical calculations, indicate that the antibonding state of the ACSs will change into a Klein-tunneling-induced quasibound state, revealing deep connection between the ACSs and the Klein tunneling.