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Investigation of Resiliency of Carbon Nanotubes and Gallium Nitride Nanocircuits to Simulated Space Radiation
Published online by Cambridge University Press: 01 February 2011
Abstract
Heavy ion irradiations of single and multi walled carbon nanotubes and total ionization dose of gallium nitride nanowires were investigated. Post irradiation analyses of samples were performed with transmission and scanning electron microscopy, atomic force microscopy and micro Raman spectroscopy.
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- Copyright © Materials Research Society 2005
References
REFERENCES
1.
Leon, R., Marcinkevicius, S., Siegert, J., Cechavicius, B., Magness, B., Taylor, W. and Lobo, C., IEEE Trans. Nucl. Sci., 49, 2844 (2002).Google Scholar
2.
Ionascut-Nedelcescu, A., Carlone, C., Houdayer, A., von Bardeleben, H. J., Cantin, J.-L., and Raymond, S., IEEE Trans. Nucl. Sci., 49, 2733 (2002).Google Scholar
3.
Halpern, J., “Growth of Wide Bandgap GaN Nanowires and Construction of a Simple GaN UV Phototransistor”, Colloquium About Special Questions in Physics, University of Muenster, Muenster, Germany, June 2002
Google Scholar
4.
Barnaby, H.J., Smith, S.K., Schrimpf, R.D., Fleetwood, D.M., and Pease, R.L., IEEE Trans. Nucl. Sci., 49, 2650 (2002).Google Scholar
Yang, A.Y., Lenahan, P.M., and Conley, J. F. Jr, IEEE Trans. Nucl. Sci., 49, 2844 (2002).Google Scholar
6.
Ma, T.P., Dressendorfer, P.V., Ionizing Radiation Effects in MOS Devices & Circuits, chapter 1, John Wiley and Sons, Toronto, 1989
Google Scholar
7.
Heinze, S., Tersoff, J., Martel, R., Derycke, V., Appenzeller, J., and Avouris, P., Phys. Rev. Lett., 89 (2002)Google Scholar
9.
Saito, R., Dresselhaus, G., and Dresselhaus, M., Physical Properties of Carbon Nanotubes, Imperial College Press, London, 1998
Google Scholar