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DOE OSTI · 2573791

Imaging quantum melting in a disordered 2D Wigner solid

Abstract

Two-dimensional strongly interacting electrons crystalize into a solid phase known as the Wigner crystal at low densities and form a Fermi liquid at high densities. At intermediate densities, the two-dimensional solid evolves into a strongly correlated liquid phase around a critical density. We observed this quantum melting of a disordered Wigner solid in bilayer molybdenum diselenide (MoSe2) using a noninvasive scanning tunneling microscopy imaging technique. At low densities, the Wigner solid forms nanocrystalline domains pinned by local disorder. It exhibits a quantum densification behavior with increased densities in the solid phase. Above a threshold density, the Wigner solid melts locally and enters a mixed phase in which solid and liquid regions coexist. The liquid regions expand and form a percolation network at even higher densities.

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Xiang, Ziyu, Li, Hongyuan, Xiao, Jianghan, Naik, Mit H, Ge, Zhehao, He, Zehao, Chen, Sudi, Nie, Jiahui, Li, Shiyu, Jiang, Yifan, Sailus, Renee, Banerjee, Rounak, Taniguchi, Takashi, Watanabe, Kenji, Tongay, Sefaattin, Louie, Steven G, Crommie, Michael F, Wang, Feng. 2025-05-15. Imaging quantum melting in a disordered 2D Wigner solid. https://doi.org/10.1126/science.ado7136

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