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【图书馆系列讲座】学位论文资源利用与写作
Gravitational back-reaction is the Holographic Dual of Magic
端牢中国饭碗和食品加工
数字人文视域下的中国当代电影:镜头时长与“代际”超越
报告题目:
Quantum gas microscopy of the Fermi Hubbard model
 报告人:
徐穆清
哈佛大学博士生
报告时间:
2019-01-21 10:00
报告地点:
物理系理科楼C302
主办单位:
物理系
  简介:

Quantum gas microscopy of ultracold fermionic atoms in optical lattices allows studying strongly correlated low-temperature phases in the Hubbard model by offering readout and manipulation at single-site resolution. Through an entropy redistribution technique we have demonstrated long-range antiferromagnetic order extending over our entire sample, a disk spanning ten sites across filled with a two-component spin mixture of ultracold fermionic Li-6 atoms in a square lattice. By hole doping the system away from half-filling we study the interplay between holes and the antiferromagnetic order: the presence of holes is predicted to distort the spin order and may for a holon-spinon string pattern. This could be an essential aspect of high-temperature superconductivity in cuprates, and the readout of our microscope allows us to directly address this question. We are also developing new techniques in accessing lower entropy states by building a new low noise interfering optical lattice. By tuning the phase between interfering lattice arms would allow for various ways of entropy engineering.

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