ICFO-Institut de Cinècies Fotòniques, The Barcelona Institute of Science and Technology, 08860 Castelldefels (Barcelona), Spain.
Department of Mechanical Engineering, Columbia University, New York, NY 10027, USA.
Science. 2017 Jul 14;357(6347):187-191. doi: 10.1126/science.aan2735. Epub 2017 Jun 8.
The response of electron systems to electrodynamic fields that change rapidly in space is endowed by unique features, including an exquisite spatial nonlocality. This can reveal much about the materials' electronic structure that is invisible in standard probes that use gradually varying fields. Here, we use graphene plasmons, propagating at extremely slow velocities close to the electron Fermi velocity, to probe the nonlocal response of the graphene electron liquid. The near-field imaging experiments reveal a parameter-free match with the full quantum description of the massless Dirac electron gas, which involves three types of nonlocal quantum effects: single-particle velocity matching, interaction-enhanced Fermi velocity, and interaction-reduced compressibility. Our experimental approach can determine the full spatiotemporal response of an electron system.
电子系统对空间中快速变化的电磁场所作出的响应具有独特的特征,包括精细的空间非局域性。这可以揭示出许多关于电子结构的信息,而这些信息在使用渐变场的标准探针中是不可见的。在这里,我们使用在接近电子费米速度的极慢速度传播的石墨烯等离子体来探测石墨烯电子液体的非局域响应。近场成像实验与无质量狄拉克电子气的全量子描述完全匹配,无需任何参数,这涉及三种类型的非局域量子效应:单粒子速度匹配、相互作用增强的费米速度和相互作用降低的压缩率。我们的实验方法可以确定电子系统的全时空响应。