Werner Miklós Antal, Demler Eugene, Aspect Alain, Zaránd Gergely
Exotic Quantum Phases "Momentum" Research Group, Department of Theoretical Physics, Budapest University of Technology and Economics, 1111, Budapest, Budafoki út 8, Hungary.
Department of Physics, Harvard University, Cambridge, Massachusetts, 02138, USA.
Sci Rep. 2018 Feb 26;8(1):3641. doi: 10.1038/s41598-018-21870-4.
We propose to apply a modified version of the excitation scheme introduced by Volchkov et al. on bosons experiencing hyperfine state dependent disorder to address the critical state at the mobility edge of the Anderson localization transition, and to observe its intriguing multifractal structure. An optimally designed, spatially focused external radio frequency pulse can be applied to generate transitions to eigenstates in a narrow energy window close to the mobility edge, where critical scaling and multifractality emerge. Alternatively, two-photon laser scanning microscopy is proposed to address individual localized states even close to the transition. The projected image of the cloud is shown to inherit multifractality and to display universal density correlations. Interactions - unavoidably present - are taken into account by solving the Gross-Pitaevskii equations, and their destructive effect on the spectral resolution and the multifractal spectrum is analyzed. Time of flight images of the excited states are predicted to show interference fringes in the localized phase, while they allow one to map equal energy surfaces deep in the metallic phase.
我们建议对Volchkov等人提出的激发方案进行修改,应用于经历超精细态相关无序的玻色子,以研究安德森局域化转变迁移率边缘处的临界状态,并观察其有趣的多重分形结构。可以施加一个经过优化设计的、空间聚焦的外部射频脉冲,以在靠近迁移率边缘的狭窄能量窗口内产生向本征态的跃迁,此时会出现临界标度和多重分形性。另外,还提出了双光子激光扫描显微镜来研究甚至接近转变的单个局域态。结果表明,云团的投影图像继承了多重分形性并显示出普遍的密度相关性。通过求解格罗斯 - 皮塔耶夫斯基方程来考虑不可避免存在的相互作用,并分析它们对光谱分辨率和多重分形谱的破坏作用。预计激发态的飞行时间图像在局域相中会显示干涉条纹,而在金属相中则可以用来绘制等能面。