arrow
返回

A graphene based frequency quadrupler

delete2017-04-18
delete21
delete
OA
AI
C
Chuantong Cheng
B
Beiju Huang *
X
Xurui Mao
Z
Zanyun Zhang
张赞 (Zan Zhang)
Z
Zhaoxin Geng
P
Ping Xue
H
Hongda Chen
DOI:10.1038/srep46605delete
delete原文链接
delete分享
delete收藏
查看原文
摘要

摘要

En 中文
Benefit from exceptional electrical transport properties, graphene receives worldwide attentions, especially in the domain of high frequency electronics. Due to absence of effective bandgap causing off-state the device, graphene material is extraordinarily suitable for analog circuits rather than digital applications. With this unique ambipolar behavior, graphene can be exploited and utilized to achieve high performance for frequency multipliers. Here, dual-gated graphene field-effect transistors have been firstly used to achieve frequency quadrupling. Two Dirac points in the transfer curves of the designed GFETs can be observed by tuning top-gate voltages, which is essential to generate the fourth harmonic. By applying 200 kHz sinusoid input, arround 50% of the output signal radio frequency power is concentrated at the desired frequency of 800 kHz. Additionally, in suitable operation areas, our devices can work as high performance frequency doublers and frequency triplers. Considered both simple device structure and potential superhigh carrier mobility of graphene material, graphene-based frequency quadruplers may have lots of superiorities in regards to ultrahigh frequency electronic applications in near future. Moreover, versatility of carbon material system is far-reaching for realization of complementary metal-oxide-semiconductor compatible electrically active devices.
Keyword:
P-N-JUNCTIONS
MULTIPLIERS
TRANSISTORS
SENSORS
DESIGN
AI总结

AI总结

对已上传原文的论文进行重点信息的提取,主要内容包括:简要概述、研究摘要、背景介绍、关键亮点、图文解析、展望与总结。

期刊

Scientific Reports 封面图
Scientific Reports
IF:
3.9
论文数:
27.8W
被引数:
83.5W

机构

U
university of chinese academy of sciences, cas
学者数:
4.1W
论文数: 3.8W
被引数: 75
I
institute of semiconductors, cas
学者数:
1.6K
论文数: 1.3K
被引数: 3
C
chinese academy of sciences
学者数:
56.7W
论文数: 44.9W
被引数: 704
学者 查看更多机构