Description: In FY05 device fabrication and material synthesis of carbon nanostructure for application to 50W, 10 GHz vacuum electronic power amplifier were optimized with respect to dielectric thickness of the buried line devices, back-gate geometry to maximize field at the emission sites, nanosheet crystallinity and hydrogen content, field uniformity at the cathode surface, and efficiency of electron emission to vacuum.
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NAVAL RESEARCH LABORATORY |
$1,446 |
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Federal |
WASHINGTON,
DC
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COLLEGE OF WILLIAM AND MARY |
$0 |
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Public Educational Institution |
WILLIAMSBURG,
VA
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Citation
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Source:
Appropriations Report Language - Conference
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Reference:
108-622
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Location:
Line 12, Page 288
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Citation Excerpt: High Brightness Electronics
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Last Modified: 16-Apr-2007
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