DocumentCode :
3852723
Title :
Three-Gigahertz Graphene Frequency Doubler on Quartz Operating Beyond the Transit Frequency
Author :
Michael E. Ramón;Kristen N. Parrish;Sk. Fahad Chowdhury;Carl W. Magnuson;Hema C. P. Movva;Rodney S. Ruoff;Sanjay K. Banerjee;Deji Akinwande
Author_Institution :
Microelectronics Research Center , The University of Texas at Austin, Austin, TX, USA
Volume :
11
Issue :
5
fYear :
2012
Firstpage :
877
Lastpage :
883
Abstract :
We demonstrate a 500-nm graphene frequency doubler with a record 3-GHz bandwidth, exceeding the device transit frequency by 50%, a previously unobserved result in graphene, indicating that graphene multiplier devices might be useful beyond their transit frequency. The maximum conversion gain of graphene ambipolar frequency doublers is determined to approach a near lossless value in the quantum capacitance limit. In addition, the experimental performance of graphene transistor frequency detectors is demonstrated, showing responsivity of 25.2 μA/μW. The high-frequency performance of these gigahertz devices is enabled by top-gate device fabrication using synthesized graphene transferred onto low capacitance, atomically smooth quartz substrates, affording carrier mobilities as high as 5000 cm2/V ·s.
Keywords :
"Gain","Performance evaluation","Transistors","Frequency conversion","Quantum capacitance","Bandwidth"
Journal_Title :
IEEE Transactions on Nanotechnology
Publisher :
ieee
ISSN :
1536-125X
Type :
jour
DOI :
10.1109/TNANO.2012.2203826
Filename :
6214614
Link To Document :
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