Spectral properties for 1D multilayer systems and application to super resolution
A. Mandatori, M. Bertolotti
	Abstract
The spectral properties of one-dimensional multilayer structures for the two polarizations TE and TM are investigated and a physical explanation for the large spatial transmission band that can be obtained with this kind of system is given together with a discussion of the correlated super resolution effect. A designing approach to build 1D metal-dielectric multilayer structures that have super resolution is also suggested
		© The Authors. All rights reserved. [DOI: 10.2971/jeos.2011.11004]
								Full Text:
							PDF
									        
        Citation Details
Citation
A. Mandatori, M. Bertolotti, "Spectral properties for 1D multilayer systems and application to super resolution", J. Europ. Opt. Soc. Rap. Public. 11004 Vol 6 (2011)
          DOI (Digital Object Identifier)
10.2971/jeos.2011.11004
          References
J. B. Pendry, "Negative refraction makes a perfect lens" Phys. Rev. Lett. 85, 3966-3969 (2000).
N. Fang, H. Lee, C. Sun, and X. Zhang, "Sub-diffraction-limited optical imaging with a silver superlens" Science 308, 534-537 (2005).
D. O. S. Melville, R. J. Blaikie, C. R. Wolf, "Super-resolution imaging through a planar silver layer" Opt. Express 13, 2127-2134 (2005).
E. Betzig and R. J. Chichester, "Single molecules observed by nearfield scanning optical microscopy" Science 262, 1422-1425 (1993).
P. N. Prasad, "Nanophotonics, Chapter 3" 1st Edition. John Wiley & Sons, Hoboken, (2004).
X. Li, S. He, and Y. Jin "Subwavelength focusing with a multilayered Fabry-Perot structure at optical frequencies" Phys. Rev. B 75, 045103 (2007)
S. A. Ramakrishna, J. B. Pendry, M. C. K. Wiltshire, W. J. Stewart, J. Mod. Opt. 50, 1419-1430 (2003).
J. B. Pendry, and S. A. Ramakrishna, "Refining the perfect lens" Physica B 338, 329-332 (2003).
B. Wood, J. P. Pendry, and D. P. Tsai, "Directed sub-wavelength imaging using metal-dielectric system" Phys. Rev. B 74, 115-116 (2006).
P. A. Belov, and Y. Hao, "Subwavelength imaging at optical frequencies using a transmission device formed by a periodic layered metal-dielectric structure operating in the canalization regime" Phys. Rev. B 73, 110-113 (2006).
M. Scalora et al, "Negative refraction and sub-wavelength focusing in the visible range using transparent metal dielectric stacks" Opt. Express 15, 508-523 (2007).
H. M. Nussenzveig, "Causality and Dispersion Relations" Academic Press, New York, (1972).
R. E. Smith, S. N. Houde-Walter, and G. W. Forbes, "Mode determination for planar waveguides using the four-sheeted dispersion relation" IEEE J. Quantum Elect. 28, 1520-1526 (1992).
        N. Fang, H. Lee, C. Sun, and X. Zhang, "Sub-diffraction-limited optical imaging with a silver superlens" Science 308, 534-537 (2005).
D. O. S. Melville, R. J. Blaikie, C. R. Wolf, "Super-resolution imaging through a planar silver layer" Opt. Express 13, 2127-2134 (2005).
E. Betzig and R. J. Chichester, "Single molecules observed by nearfield scanning optical microscopy" Science 262, 1422-1425 (1993).
P. N. Prasad, "Nanophotonics, Chapter 3" 1st Edition. John Wiley & Sons, Hoboken, (2004).
X. Li, S. He, and Y. Jin "Subwavelength focusing with a multilayered Fabry-Perot structure at optical frequencies" Phys. Rev. B 75, 045103 (2007)
S. A. Ramakrishna, J. B. Pendry, M. C. K. Wiltshire, W. J. Stewart, J. Mod. Opt. 50, 1419-1430 (2003).
J. B. Pendry, and S. A. Ramakrishna, "Refining the perfect lens" Physica B 338, 329-332 (2003).
B. Wood, J. P. Pendry, and D. P. Tsai, "Directed sub-wavelength imaging using metal-dielectric system" Phys. Rev. B 74, 115-116 (2006).
P. A. Belov, and Y. Hao, "Subwavelength imaging at optical frequencies using a transmission device formed by a periodic layered metal-dielectric structure operating in the canalization regime" Phys. Rev. B 73, 110-113 (2006).
M. Scalora et al, "Negative refraction and sub-wavelength focusing in the visible range using transparent metal dielectric stacks" Opt. Express 15, 508-523 (2007).
H. M. Nussenzveig, "Causality and Dispersion Relations" Academic Press, New York, (1972).
R. E. Smith, S. N. Houde-Walter, and G. W. Forbes, "Mode determination for planar waveguides using the four-sheeted dispersion relation" IEEE J. Quantum Elect. 28, 1520-1526 (1992).



