Low-Temperature Thermal Transport Characteristics in Epitaxial Bilayer Graphene Microbridges
被引:0
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作者:
Li, Feiming
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机构:
Chinese Acad Sci, Purple Mt Observ, Nanjing 210033, Peoples R China
Univ Sci & Technol China, Hefei 230026, Peoples R ChinaChinese Acad Sci, Purple Mt Observ, Nanjing 210033, Peoples R China
Li, Feiming
[1
,2
]
Miao, Wei
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h-index: 0
机构:
Chinese Acad Sci, Purple Mt Observ, Nanjing 210033, Peoples R ChinaChinese Acad Sci, Purple Mt Observ, Nanjing 210033, Peoples R China
Miao, Wei
[1
]
Yu, Cui
论文数: 0引用数: 0
h-index: 0
机构:
Natl Key Lab Solid State Microwave Devices & Circu, Shijiazhuang 050051, Peoples R ChinaChinese Acad Sci, Purple Mt Observ, Nanjing 210033, Peoples R China
Yu, Cui
[3
]
He, Zezhao
论文数: 0引用数: 0
h-index: 0
机构:
Natl Key Lab Solid State Microwave Devices & Circu, Shijiazhuang 050051, Peoples R ChinaChinese Acad Sci, Purple Mt Observ, Nanjing 210033, Peoples R China
He, Zezhao
[3
]
Wang, Qingcheng
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h-index: 0
机构:
Chinese Acad Sci, Purple Mt Observ, Nanjing 210033, Peoples R China
Univ Sci & Technol China, Hefei 230026, Peoples R ChinaChinese Acad Sci, Purple Mt Observ, Nanjing 210033, Peoples R China
Wang, Qingcheng
[1
,2
]
Zhong, Jiaqiang
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机构:
Chinese Acad Sci, Purple Mt Observ, Nanjing 210033, Peoples R ChinaChinese Acad Sci, Purple Mt Observ, Nanjing 210033, Peoples R China
Zhong, Jiaqiang
[1
]
Wu, Feng
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机构:
Chinese Acad Sci, Purple Mt Observ, Nanjing 210033, Peoples R ChinaChinese Acad Sci, Purple Mt Observ, Nanjing 210033, Peoples R China
Wu, Feng
[1
]
Wang, Zheng
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机构:
Chinese Acad Sci, Purple Mt Observ, Nanjing 210033, Peoples R ChinaChinese Acad Sci, Purple Mt Observ, Nanjing 210033, Peoples R China
Wang, Zheng
[1
]
Zhou, Kangmin
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机构:
Chinese Acad Sci, Purple Mt Observ, Nanjing 210033, Peoples R ChinaChinese Acad Sci, Purple Mt Observ, Nanjing 210033, Peoples R China
Zhou, Kangmin
[1
]
Ren, Yuan
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Chinese Acad Sci, Purple Mt Observ, Nanjing 210033, Peoples R ChinaChinese Acad Sci, Purple Mt Observ, Nanjing 210033, Peoples R China
Ren, Yuan
[1
]
Zhang, Wen
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Chinese Acad Sci, Purple Mt Observ, Nanjing 210033, Peoples R ChinaChinese Acad Sci, Purple Mt Observ, Nanjing 210033, Peoples R China
Zhang, Wen
[1
]
Li, Jing
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机构:
Chinese Acad Sci, Purple Mt Observ, Nanjing 210033, Peoples R ChinaChinese Acad Sci, Purple Mt Observ, Nanjing 210033, Peoples R China
Li, Jing
[1
]
Shi, Shengcai
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机构:
Chinese Acad Sci, Purple Mt Observ, Nanjing 210033, Peoples R ChinaChinese Acad Sci, Purple Mt Observ, Nanjing 210033, Peoples R China
Shi, Shengcai
[1
]
Liu, Qingbin
论文数: 0引用数: 0
h-index: 0
机构:
Natl Key Lab Solid State Microwave Devices & Circu, Shijiazhuang 050051, Peoples R ChinaChinese Acad Sci, Purple Mt Observ, Nanjing 210033, Peoples R China
Liu, Qingbin
[3
]
Feng, Zhihong
论文数: 0引用数: 0
h-index: 0
机构:
Natl Key Lab Solid State Microwave Devices & Circu, Shijiazhuang 050051, Peoples R ChinaChinese Acad Sci, Purple Mt Observ, Nanjing 210033, Peoples R China
Feng, Zhihong
[3
]
机构:
[1] Chinese Acad Sci, Purple Mt Observ, Nanjing 210033, Peoples R China
[2] Univ Sci & Technol China, Hefei 230026, Peoples R China
[3] Natl Key Lab Solid State Microwave Devices & Circu, Shijiazhuang 050051, Peoples R China
来源:
ACS OMEGA
|
2024年
/
9卷
/
21期
基金:
国家重点研发计划;
中国国家自然科学基金;
关键词:
FIELD-EFFECT TRANSISTORS;
BOLOMETER;
D O I:
10.1021/acsomega.4c02727
中图分类号:
O6 [化学];
学科分类号:
0703 ;
摘要:
In this paper, we present a study of the thermal transport of epitaxial bilayer graphene microbridges. The thermal conductance of three graphene microbridges with different lengths was measured at different temperatures using Johnson noise thermometry. We find that with the decrease of the temperature, the thermal transport in the graphene microbridges switches from electron-phonon coupling to electron diffusion, and the switching temperature is dependent on the length of the microbridge, which is in good agreement with the simulation based on a distributed hot-spot model. Moreover, the electron-phonon thermal conductance has a temperature power law of T-3 as predicted for pristine graphene and the electron-phonon coupling coefficient sigma(ep) is found to be approximately 0.18 W/(m(2) K-4), corresponding to a deformation potential D of 55 eV. In addition, the electron diffusion in the graphene microbridges adheres to the Wiedemann-Franz law, requiring no corrections to the Lorentz number.