Page 258 - Principles and Applications of NanoMEMS Physics
P. 258
248
[140] C. L. Kane and M. P. A. Fisher, “Transport in a Single Channel Luttinger Liquid,”Phys.
Rev. Lett. vol. 68, 1992, p. 1220.
[141] M.P.A. Fisher, L.I. Glazman. Transport in one-dimensional Luttinger liquid. In:
Mesoscopic Electron Transport, ed. by L.L. Sohn, L.P. Kouwenhoven, and G. Schoen.
NATO ASI Series, vol. 345, Kluwer Academic Publishers (1997). p. 331.
[142] S. John, “Strong Localization of Photons in Certain Disordered Dielectric
Superlattices,” Phys. Rev. Letts, vol. 58, No. 23, 8 June 1987, pp. 2486-2489.
[143] N. Hamada, S. Sawada and A. Oshiyama, “New one-dimensional conductors: graphitic
microtubules,” Phys. Rev. Lett., vol. 68, 1992, p. 1579.
[144] P.L. McEuen, M.S. Fuhrer, and H. Park, “Single-Walled Carbon Nanotube
Electronics,” IEEE Trans. Nanotechnology, Vol. 1, No. 1, March 2002, pp. 78-85.
[145] P. Avouris, J. Appenzeller, R. Martel, and S.J. Wind, “Carbom Nanotube Electronics,”
IEEE Proc., Vol. 91, No. 11, Nov. 2003, pp. 1772-1784.
[146] M.S. Dresselhaus, G. Dresselhaus and R. Saito, “Physics of carbon nanotubes,” Carbon,
vol. 33, 1995, p. 883.
[147] M.S. Dresselhaus, G. Dresselhaus and P.C. Eklund, Science of fullerenes and carbon
nanotubes, Academic Press, San Diego (1996).
[148] P. J. Burke, “Lüttinger Liquid Theory as a Model of the Gigahertz Electrical Properties
of Carbon Nanotubes,” IEEE. Trans. Nanotechnology, Vol. 1, No. 3, Sept. 2002, pp.
129-144.
[149] M. Bockrath, D. H. Cobden, J. Lu et al., “Luttinger-liquid behaviour in carbon
nanotubes,” Nature Vol. 397, 18 February 1999, pp. 598-601.
[150] C. L. Kane, L. Balents, M. P. A. Fisher, “Coulomb interactions and mesoscopic effects
in carbon nanotubes,” Phys. Rev. Lett. Vol. 79 (1997), pp. 5086–5089.
[151] H.W.C. Postma, Carbon nanotube junctions and devices, Doctoral Dissertation, Delft
University of Technology, Delft University Press (2001).
[152] P.J. Burke, “A technique to directly excite Luttinger liquid collective modes in carbon
nanotubes at GHz frequencies,”
Online Version: http:// xxx.lanl.gov/pdf/cond-mat/0204262
[153] L.D. Landau, “The theory of superfluidity of helium II,” Zh. Eksp. Teor. Fiz., Vol. 11,
1941, p. 592.
[154] L.D. Landau, “The theory of superfluidity of helium II,” J. Phys. USSR, Vol. 11, 91
(1947).
[155] A. J. Leggett, “Superfluidity,” Reviews of Modern Physics, Vol. 71, No. 2, Centenary
1999, pp. S318-S323.
[156] J. R. Abo-Shaeer, C. Raman, J. M. Vogels et al., “Observation of Vortex
Lattices in Bose-Einstein Condensates,” Science, 20 April 2001, Vol. 292, pp. 476-479.
[157] C. Kittel, Quantum Theory of Solids, Second Revised Printing, New York, N.Y.: John
Wiley & Sons (1987).
[158] A.A Abrikosov, Fundamentals of the Theory of Metals, North-Holland, (1988).
[159] M. Lundstrom, Fundamentals of Carrier Transport, Volume X, Modular Series on Solid
State Devices, G.W. Neudeck and R.F. Pierret, Editors, Reading, MA: Addison-Wesley