Correlated insulator of excitons in WSe2/WS2 moiré superlattices

Richen Xiong
Richen Xiong
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et-al
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We observed a bosonic correlated insulator in WSe2/WS2 moiré superlattices composed of excitons, tightly bound electron-hole pairs. In our experiment, we built a novel optical pump–probe technique, which is an optical counterpart of electrical capacitance measurement and distinctively different from conventional pump–probe concepts. We directly obtained exciton chemical potential depending on exciton density and identified an incompressible state of exciton at filling $\nu_{\text{ex}} = 1$, the hallmark of a bosonic correlated insulator. By further varying charge density with gate, we also observed a mixed correlated insulator involving both fermionic electrons and bosonic excitons. These observations are well captured by a Bose-Fermi-Hubbard model.

Richen Xiong
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HQI Postdoctoral Fellow
I am an experimental physicist and HQI Postdoctoral Fellow at Harvard University studying how light–matter interactions uncover new physics in quantum materials. My work spans microwave to ultrafast optical spectroscopy to track dynamical many-body states, with a focus on harnessing native entanglement and coherence in correlated materials to expand the frontiers of quantum sensing and quantum information science.