Page 254 - Principles and Applications of NanoMEMS Physics
P. 254
244
[53] S.D. Senturia, Microsystem Design, Kluwer Academic Publishers: Boston, MA (2001).
[54] H. J. De Los Santos, RF MEMS Circuit Design for Wireless Communications, Artech
House: Norwood, MA (2002).
[55] Online Version: http://www.intel.com/labs/BobRaoIDF022802.pdf
[56] H.J. De Los Santos, “Nanoelectromechanical Quantum Circuits and Systems,” Proc.
IEEE, Vol. 91, No. 11, November 2003, pp. 1907-1921.
[57] R. E. Collin, Foundations of Microwave Engineering, New York, N.Y.: IEEE Press,
(2001).
[58] S. Datta, Quantum Phenomena, Reading, MA: Addison-Wesley (1989).
[59] T. Ando, Y. Arakawa, K. Furuya, et al. (Eds.), Mesoscopic Physics and Electronics,
Springer-Verlag: New York (1999).
[60] C. Cohen-Tannoudji, B. Diu and F. Laloë, Quantum Mechanics, Volume 1, (John Wiley
& Sons: New York (1977).
[61] Y.-Q. Li and B. Chen, “Quantum Theory of Mesoscopic Electric Circuits,” Phys. Rev. B
vol. 53, 1996, p. 4027.
[62] J.C. Flores, “Mesoscopic Circuits with Charge Discreteness: Quantum Transmission
Lines,” Physical Review B, vol. 64, Issue 23, December 15, 2001, p. 235309.
[63] W.H. Louisell, Quantum Statistical Properties of Radiation, John Wiley & Sons: New
York (1973).
[64] N.W. Ashcroft and N.D. Mermin, Solid State Physics, Sounders College: Philadelphia,
(1976).
[65] L. Lapidus and G.F. Pinder, Numerical Solution of Partial Differential Equations in
Science and Engineering, John Wiley & Sons: New York (1982).
[66] J.C. Flores and E. Lazo, “Bloch-like oscillations induced by charge discreteness in
quantum mesoscopic rings,” Online Version: http://xxx.lanl.gov, cond-mat/9910101
[67] Y.-Q. Li and B. Chen, “Quantum Theory for Mesoscopic Electronic Circuits and Its
Applications,” OnlineVersion: http://xxx.lanl.gov, cond-mat/9907171
[68] G. Schön, “Single Electron Tunneling,” Chapter 3 of the book on Quantum Transport
and Dissipation, T. Dittrich, P. Hangge, G. Ingold, B. Kramer, G. Schon, W. Zwerger,
(1997).
[69] K. K. Likharev, Single-Electron Devices and Their Applications,” Proc. IEEE, vol. 87,
April 1999, pp. 606-632.
[70] S. Babiker, “Simulation of Single-Electron Transport in Nanostructured Quantum Dots,”
IEEE Trans. Electron Dev.,vol. 52 , No. 3 , March 2005, pp. 392-396.
[71] S. M. Goodnick and J. Bird, “Quantum-Effect and Single-Electron Devices,” IEEE
Trans. Nanotechnology, vol. 2, No. 4, Dec. 2004, pp. 368-385.
[72] A.N. Cleland and M.L. Roukes, "Fabrication of high frequency nanometer scale
mechanical resonators from bulk Si substrates", Appl. Phys. Lett., vol. 69, 1996, p.2653.
[73] S. Sapmaz, Ya. M. Blanter, L. Gurevich, et al, “Carbon Nanotubes as
Nanoelectromechanical Systems,” Phys. Rev. B, vol. 67, 2003, pp. 235414-235422.
[74] H.B.G. Casimir, “On the attraction between two perfectly conducting plates,” Proc. K.
Ned. Akad. Wet. vol. 51, 1948, p. 793.
[75] P.W. Milonni, The Quantum Vacuum: An Introduction to Quantum Electrodynamics,