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том 2 издание 1 номер публикации 52

Gated tuned superconductivity and phonon softening in monolayer and bilayer MoS2

Тип публикацииJournal Article
Дата публикации2017-09-12
scimago Q1
wos Q1
white level БС1
SJR2.166
CiteScore10.3
Impact factor6.2
ISSN23974648
Electronic, Optical and Magnetic Materials
Condensed Matter Physics
Краткое описание
Superconductors at the atomic two-dimensional limit are the focus of an enduring fascination in the condensed matter community. This is because, with reduced dimensions, the effects of disorders, fluctuations, and correlations in superconductors become particularly prominent at the atomic two-dimensional limit; thus such superconductors provide opportunities to tackle tough theoretical and experimental challenges. Here, based on the observation of ultrathin two-dimensional superconductivity in monolayer and bilayer molybdenum disulfide (MoS2) with electric-double-layer gating, we found that the critical sheet carrier density required to achieve superconductivity in a monolayer MoS2 flake can be as low as 0.55 × 1014 cm−2, which is much lower than those values in the bilayer and thicker cases in previous report and also our own observations. Further comparison of the phonon dispersion obtained by ab initio calculations indicated that the phonon softening of the acoustic modes around the M point plays a key role in the gate-induced superconductivity within the Bardeen–Cooper–Schrieffer theory framework. This result might help enrich the understanding of two-dimensional superconductivity with electric-double-layer gating. Experiments show that a softening of phonon modes aids gate-induced superconductivity in two-dimensional materials. As a material’s dimensions are reduced, the role of disorder and electronic correlations in defining the electronic properties become more prominent, and as the density of charge carriers is much lower, superconductivity is less likely to emerge. An international team of researchers led by Feng Mio and Baigeng Wang from Nanjing University and Harold Hwang from SLAC National Accelerator laboratory and Stanford University use an ionic liquid-based setup, which allows for high gate voltages to be applied, to demonstrate gate-induced superconductivity in monolayers and bilayers of a transition metal dichalcogenide. They show that a softening of the acoustic phonon modes allows for superconductivity to be realized in single layers with a lower carrier density than that needed in multilayers.
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ГОСТ |
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Fu Y. et al. Gated tuned superconductivity and phonon softening in monolayer and bilayer MoS2 // npj Quantum Materials. 2017. Vol. 2. No. 1. 52
ГОСТ со всеми авторами (до 50) Скопировать
Fu Y., Liu E., YUAN H., Tang P., Lian B., Xu G., Zeng J., Chen Z., Wang Y., Zhou W., Xu K., Gao A., Pan C., Wang M., Wang B., Zhang S. C., Cui Y., Hwang H. Y., Miao F. J. Gated tuned superconductivity and phonon softening in monolayer and bilayer MoS2 // npj Quantum Materials. 2017. Vol. 2. No. 1. 52
RIS |
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TY - JOUR
DO - 10.1038/s41535-017-0056-1
UR - https://www.nature.com/articles/s41535-017-0056-1
TI - Gated tuned superconductivity and phonon softening in monolayer and bilayer MoS2
T2 - npj Quantum Materials
AU - Fu, Yajun
AU - Liu, Erfu
AU - YUAN, HONGTAO
AU - Tang, Peizhe
AU - Lian, Biao
AU - Xu, Gang
AU - Zeng, Junwen
AU - Chen, Zhuoyu
AU - Wang, Yaojia
AU - Zhou, Wei
AU - Xu, Kang
AU - Gao, Anyuan
AU - Pan, Chen
AU - Wang, Miao
AU - Wang, Baigeng
AU - Zhang, Shou Cheng
AU - Cui, Yi
AU - Hwang, Harold Y.
AU - Miao, Feng Juan
PY - 2017
DA - 2017/09/12
PB - Springer Nature
IS - 1
VL - 2
SN - 2397-4648
ER -
BibTex
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BibTex (до 50 авторов) Скопировать
@article{2017_Fu,
author = {Yajun Fu and Erfu Liu and HONGTAO YUAN and Peizhe Tang and Biao Lian and Gang Xu and Junwen Zeng and Zhuoyu Chen and Yaojia Wang and Wei Zhou and Kang Xu and Anyuan Gao and Chen Pan and Miao Wang and Baigeng Wang and Shou Cheng Zhang and Yi Cui and Harold Y. Hwang and Feng Juan Miao},
title = {Gated tuned superconductivity and phonon softening in monolayer and bilayer MoS2},
journal = {npj Quantum Materials},
year = {2017},
volume = {2},
publisher = {Springer Nature},
month = {sep},
url = {https://www.nature.com/articles/s41535-017-0056-1},
number = {1},
pages = {52},
doi = {10.1038/s41535-017-0056-1}
}
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