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  <title><![CDATA[Record Maximum Oscillation Frequency in C-face Epitaxial Graphene Transistors]]></title>
  <body><![CDATA[<p>The maximum oscillation frequency (fmax) quantifies the practical upper bound for useful circuit operation. We report here an fmax of 70 GHz in transistors using epitaxial graphene grown on the C-face of SiC. This is a significant improvement over Si-face epitaxial graphene used in the prior high frequency transistor studies, exemplifying the superior electronics potential of C-face epitaxial graphene. Careful transistor design using a high {\kappa} dielectric T-gate and self-aligned contacts, further contributed to the record-breaking fmax.</p>]]></body>
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      <value>2013-02-21T00:00:00-05:00</value>
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      <value><![CDATA[We report here an fmax of 70 GHz in transistors using epitaxial graphene grown on the C-face of SiC.]]></value>
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      <value><![CDATA[<p>The maximum oscillation frequency (fmax) quantifies the practical upper bound for useful circuit operation. We report here an fmax of 70 GHz in transistors using epitaxial graphene grown on the C-face of SiC. This is a significant improvement over Si-face epitaxial graphene used in the prior high frequency transistor studies, exemplifying the superior electronics potential of C-face epitaxial graphene. Careful transistor design using a high {\kappa} dielectric T-gate and self-aligned contacts, further contributed to the record-breaking fmax.</p>]]></value>
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  <!--  TO DO: correct to not conflate categories and news room topics  -->
  <!--  Disquisition: it's funny how I write these TODOs and then never
         revisit them. It's as though the act of writing the thing down frees me
         from the responsibility to actually solve the problem. But what can I
         say? There are more problems than there's time to solve.  -->
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        <![CDATA[Art Research]]>
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      <url>http://pubs.acs.org/doi/abs/10.1021/nl303587r</url>
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        <tid>9116</tid>
        <value><![CDATA[epitaxial graphene]]></value>
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