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Electrically controlled interlayer trion fluid in electron-hole bilayers

delete2025-10-16
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PRE
AI
R
Ruishi Qi
Q
Qize Li
Z
Zuocheng Zhang
S
Su-Di Chen
J
Jingxu Xie
Y
Yunbo Ou
Z
Zhiyuan Cui
D
David D. Dai
A
Andrew Y. Joe
T
Takashi Taniguchi
K
Kenji Watanabe
S
Sefaattin Tongay
A
Alex Zettl
L
Liang Fu
F
Feng Wang *
DOI:10.1126/science.adn4584delete
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Abstract

Abstract

En 中文
Semiconductors can host multiparticle electron-hole states, which are usually short-lived due to electron-hole recombination. A promising system for studying their equilibrium properties are double layers of transition metal dichalcogenides, in which the carrier density in each layer can be independently controlled. Qi et al. and Nguyen et al. engineered an equilibrium quantum liquid of trions consisting of, for example, two holes and an electron in Coulomb-coupled molybdenum and tungsten diselenide (MoSe2/WSe2) double layers (see the Perspective by Ouyang and Shi). To achieve this, the researchers tuned the ratio of electron density in the MoSe2 layer to the hole density in the WSe2 layer and used transport, capacitance, and optical measurements to probe the system. —Jelena Stajic

Journal

Science cover
Science
IF:
45.8
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Citations:
78.6W

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Arizona State University
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