Download Optics at the Nanometer Scale: Imaging and Storing with by J.-J. Greffet, R. Carminati (auth.), M. Nieto-Vesperinas, N. PDF

By J.-J. Greffet, R. Carminati (auth.), M. Nieto-Vesperinas, N. García (eds.)

Optics on the Nanometer Scale: Imaging and Storing with Photonic NearFields bargains with the basics of and the most recent advancements and functions of near-field optical microscopy, giving simple debts of ways and below what situations superresolution past the part- wavelength Rayleigh restrict is completed. Interferometric and fluorescence innovations also are defined, resulting in molecular or even atomic answer utilizing gentle. The garage of optical info at this point of answer is usually addressed.

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112, 189-200. 11. de Fomel. , Sentenac. , Carminati, R. and Greffet, 1. -J. (1996) Analysis of the image formation with a Photon Scanning Tunneling Microscope, 1. Opt. Soc. Am. A (in press). 12. Carminati, R. 1. (1995) Two dimensional numerical simulation of the Photon Scanning Tunneling Microscope. Concept of transfer function. Opt. Commun. 116,316-321. 25 13. Carminati, R. 1. (1995) Influence of dielectric contrast and topography on the near field scattered by an inhomogeneous surface, J. Opt.

65j1m. 88. These are the dielectric functions of gold and silver, respectively, at a wavelength>.. 5pm. 08 11m above the planar metal surface perturbed by these structures. 4. The Method of Calculation Because the system depicted in Fig. 1 is invariant in the x2-direction, and the plane of incidence of the electromagnetic field is the Xlx3-plane, there is no cross-polarized scattering in it. 15 I Ul c: 0 . ~ E ..... 15 r--. 10 c: (c) 0. 00 ~ CJl 0 . 0 0. 0 Pos iti on [ microns ] Figure 2. The six surface structures whose images are calculated in this paper.

This research has been supported by the Comision Interministerial de Ciencia y Tecnologia under grant PB 92-00S1. M. acknowledges a scholarship from Comunidad Autonoma de Madrid. 39 References 1. 2. 3. 4. 5. 6. 7. 8. 9. 10. 11. 12. 13. 14. 15. 16. 17. 18. 19. 20. 21. 22. 23. 24. 25. 26. 27. 28. A. Madrazo and M. Nieto-Vesperinas, J. Opt. Soc. Am. (in press) R. J. Greifet, Opt. Comm. 116, 316 (1995) L. W. Pohl and P. Regli, J. Opt. Soc. Am. A 11, 1768 (1994) C. Girard and A. Dereaux, Phys. Rev. B 49,11344 (1994).

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