Page 262 - Principles and Applications of NanoMEMS Physics
P. 262
252
Optics Express, Vol. 8,
[221] S. I. Bozhevolnyi, J. Erland, K. Leosson et al., “Waveguiding in Surface Plasmon
Polariton Band Gap Structures,” Phys. Rev. Lett., vol. 26, No. 14, 2 April 2001, pp.
3008-3011.
[222] J. R. Krenn, H. Ditlbacher, G. Schider et al., “Surface plasmon micro- and nano-optics,”
Journal of Microscopy, Vol. 209, Pt 3 March 2003, pp. 167–172
[223] M. H. Huang, S.l. Mao, H. Feick et al., “Room-Temperature Ultraviolet Nanowire
Nanolasers,” Science, Vol. 292, 8 June 2001, pp. 1897-1899.
[224] D. W. Pohl, “Near-Field Optics and the Surface Plasmon Polariton,” Chapter in S.
Kawata (Ed.): Near-Field Optics and Surface Plasmon Polaritons, Topics Appl. Phys.,
vol. 81, Berlin: Springer-Verlag (2001), pp. 1-13.
[225] R. C. Dunn, “Near-Field Scanning Optical Microscopy,” Chem. Rev., Vol. 99, 1999, pp.
2891-2927
[226] E.H. Synge, "A suggested method for extending the microscopic resolution into the
ultramicroscopic region" Phil. Mag. Vol. 6, 356 (1928).
[227] E.H. Synge, "An application of piezoelectricity to microscopy", Phil. Mag., vol. 13,
1932, p. 297
[228]Online Version:
http://www.nanonics.co.il/main/twolevels_item1.php?ln=en&item_id=34&main_id=14
[229] H. A. Bethe, H. A. “Theory of diffraction by small holes,” Phys. Rev., vol. 66, 1944,
pp. 163-182.
[230] CJ Bouwkamp, "On the diffraction of electromagnetic waves by small circular disks
and holes," Philips Res. Rep. vol. 5, 1950, pp. 401-422.
[231] CJ Bouwkamp, “On Bethe’s theory of diffraction by small holes,” Philips Res. Rep.,
vol. 5, 1950, pp. 321–332.
[232] D. S. Koltun and J. M. Eisenberg, Quantum Mechanics of Many Degrees of Freedom,
New York, N.Y.: John Wiley & Sons, Inc.,(1988).
[233] S. Raimes, Many-Electron Theory, New York, N.Y.: American Elsevier Publishing Co.,
(1972).