Rick Rajter

Publications

Rajter, R., & French, R. H. (2010). Van der {Waals–London} dispersion interaction framework for experimentally realistic carbon nanotube systems. International Journal of Materials Research (formerly Zeitschrift fuer Metallkunde), 101 , 27–42.
Rajter, R., French, R. H., Ching, W. H., Podgornik, R. H., & Parsegian, V. H. (2013). Chirality-dependent properties of carbon nanotubes: electronic structure, optical dispersion properties, Hamaker coefficients and van der Waals–London dispersion interactions. RSC Advances, 3 , 823.
French, R. H., Rajter, R. H., Podgornik, R. H., Parsegian, V. H., Rajter, R. H., Jagota, A. H., Luo, J. H., Asthagiri, D. H., Chaudhury, M. H., Chiang, Y. H., Granick, S. H., Kalinin, S. H., Kardar, M. H., Kjellander, R. H., Langreth, D. H., Lewis, J. H., Lustig, S. H., Wesolowski, D. H., Wettlaufer, J. H., Ching, W. H., Finnis, M. H., Houlihan, F. H., Anatole von Lilienfeld, O. H., Jan van Oss, C. H., & Zemb, T. H. (2010). Long Range Interactions In Nanoscale Science. Reviews of Modern Physics, 82 , 1887–1944.
Šiber, A., Rajter, R., French, R. H., Ching, W. H., Parsegian, V. H., & Podgornik, R. H. (2010). Optically anisotropic infinite cylinder above an optically anisotropic half space: Dispersion interaction of a single-walled carbon nanotube with a substrate. Journal of Vacuum Science & Technology B: Microelectronics and Nanometer Structures, 28 , C4A17.
Rajter, R., & French, R. H. (2010). Van der {Waals–London} dispersion interaction framework for experimentally realistic carbon nanotube systems. International Journal of Materials Research (formerly Zeitschrift fuer Metallkunde), 101 , 27–42.
Šiber, A., Rajter, R., French, R. H., Ching, W. H., Parsegian, V. H., & Podgornik, R. H. (2009). Dispersion interactions between optically anisotropic cylinders at all separations: Retardation effects for insulating and semiconducting single-wall carbon nanotubes. Physical Review B, 80
Rajter, R., & French, R. H. (2008). New perspectives on van der {Waals–London} interactions of materials. From planar interfaces to carbon nanotubes. .