References
1. F.W. Sears, M.W. Zemansky, H.D. Young (University physics, Addison-Wesley, 1987)
2. R.P. Feynman, R.B. Leighton, M. Sands, The Feynman Lectures on Physics, Vol. II: The New
Millennium Edition: Mainly Electromagnetism and Matter, vol. 2 (Basic books, 2011)
3. D.J. Griffiths, Introduction to Electrodynamics (AAPT, 2005)
4. A.W. Poyser, Magnetism and Electricity: A Manual for Students in Advanced Classes (Longmans, Green and Company, 1918)
5. M. Faraday, On some new electro-magnetical motions, and on the theory of magnetism. Quart.
J. Sci. 12, 74–96 (1821)
6. J.C. Maxwell, A Treatise on Electricity and Magnetism, vol. 1 (Clarendon Press, Oxford,
1873)
7. M.N.O. Sadiku, Elements of Electromagnetics (Oxford University Press, 2014)
8. M.R. Spiegel, Schaum’s Outline of Theory and Problems of Vector Analysis and An Introduction to Tensor Analysis (McGraw-Hill, 1959)
9. R. Garg, Analytical and Computational Methods in Electromagnetics (Artech house, 2008)
10. A.K. Ghatak, Optics (Tata McGraw Hill, 2003)
11. A.K. Ghatak, K. Thyagarajan, Optical Electronics (Cambridge University Press, 1989)
12. R.P. Feynman, R.B. Leighton, M. Sands, The Feynman Lectures on Physics, Vol. I: The New
Millennium Edition: Mainly Mechanics, Radiation, and Heat, vol. 1 (Basic books, 2011)
13. M. Born, E. Wolf, Fundamentals of Optics (M Nauka (Science), 1982)
14. F.A. Jenkins, H.E. White, Fundamentals of Optics (Tata McGraw-Hill Education, 1937)
15. S.A. Maier, Plasmonics: Fundamentals and Applications (Springer Science & Business
Media, 2007)
16. V.G. Veselago, The electrodynamics of substances with simultaneously negative values of
and μ. Sov. Phys. Uspekhi 10(4), 509 (1968)
17. D.R. Smith, W.J. Padilla, D.C. Vier, S.C. Nemat-Nasser, S. Schultz, Composite medium with
simultaneously negative permeability and permittivity. Phys. Rev. Lett. 84(18), 4184 (2000)
18. D.R. Smith, J.B. Pendry, M.C.K. Wiltshire, Metamaterials and negative refractive index.
Science 305(5685), 788–792 (2004)
19. D.R. Smith, D.C. Vier, T. Koschny, C.M. Soukoulis, Electromagnetic parameter retrieval from
inhomogeneous metamaterials. Phys. Rev. E 71(3), 036617 (2005)
20. J.B. Pendry, A.J. Holden, W.J. Stewart, I. Youngs, Extremely low frequency plasmons in
metallic mesostructures. Phys. Rev. Lett. 76(25), 4773 (1996)
21. J.B. Pendry, A.J. Holden, D.J. Robbins, W.J. Stewart, Low frequency plasmons in thin-wire
structures. J. Phys.: Condens. Matter 10(22), 4785 (1998)
22. J.B. Pendry, A.J._ Holden, D.J. Robbins, W.J. Stewart, Magnetism from conductors and
enhanced nonlinear phenomena. IEEE Trans. Microw Theory Tech. 47(11), 2075–2084 (1999)
23. W. Cai, V.M. Shalaev. Optical Metamaterials, vol. 10 (Springer, 2010)
© The Editor(s) (if applicable) and The Author(s), under exclusive license to Springer
Nature Singapore Pte Ltd. 2021
N. Shankhwar and R. K. Sinha, Zero Index Metamaterials,
https://doi.org/10.1007/978-981-16-0189-7
133
1. F.W. Sears, M.W. Zemansky, H.D. Young (University physics, Addison-Wesley, 1987)
2. R.P. Feynman, R.B. Leighton, M. Sands, The Feynman Lectures on Physics, Vol. II: The New
Millennium Edition: Mainly Electromagnetism and Matter, vol. 2 (Basic books, 2011)
3. D.J. Griffiths, Introduction to Electrodynamics (AAPT, 2005)
4. A.W. Poyser, Magnetism and Electricity: A Manual for Students in Advanced Classes (Longmans, Green and Company, 1918)
5. M. Faraday, On some new electro-magnetical motions, and on the theory of magnetism. Quart.
J. Sci. 12, 74–96 (1821)
6. J.C. Maxwell, A Treatise on Electricity and Magnetism, vol. 1 (Clarendon Press, Oxford,
1873)
7. M.N.O. Sadiku, Elements of Electromagnetics (Oxford University Press, 2014)
8. M.R. Spiegel, Schaum’s Outline of Theory and Problems of Vector Analysis and An Introduction to Tensor Analysis (McGraw-Hill, 1959)
9. R. Garg, Analytical and Computational Methods in Electromagnetics (Artech house, 2008)
10. A.K. Ghatak, Optics (Tata McGraw Hill, 2003)
11. A.K. Ghatak, K. Thyagarajan, Optical Electronics (Cambridge University Press, 1989)
12. R.P. Feynman, R.B. Leighton, M. Sands, The Feynman Lectures on Physics, Vol. I: The New
Millennium Edition: Mainly Mechanics, Radiation, and Heat, vol. 1 (Basic books, 2011)
13. M. Born, E. Wolf, Fundamentals of Optics (M Nauka (Science), 1982)
14. F.A. Jenkins, H.E. White, Fundamentals of Optics (Tata McGraw-Hill Education, 1937)
15. S.A. Maier, Plasmonics: Fundamentals and Applications (Springer Science & Business
Media, 2007)
16. V.G. Veselago, The electrodynamics of substances with simultaneously negative values of
and μ. Sov. Phys. Uspekhi 10(4), 509 (1968)
17. D.R. Smith, W.J. Padilla, D.C. Vier, S.C. Nemat-Nasser, S. Schultz, Composite medium with
simultaneously negative permeability and permittivity. Phys. Rev. Lett. 84(18), 4184 (2000)
18. D.R. Smith, J.B. Pendry, M.C.K. Wiltshire, Metamaterials and negative refractive index.
Science 305(5685), 788–792 (2004)
19. D.R. Smith, D.C. Vier, T. Koschny, C.M. Soukoulis, Electromagnetic parameter retrieval from
inhomogeneous metamaterials. Phys. Rev. E 71(3), 036617 (2005)
20. J.B. Pendry, A.J. Holden, W.J. Stewart, I. Youngs, Extremely low frequency plasmons in
metallic mesostructures. Phys. Rev. Lett. 76(25), 4773 (1996)
21. J.B. Pendry, A.J. Holden, D.J. Robbins, W.J. Stewart, Low frequency plasmons in thin-wire
structures. J. Phys.: Condens. Matter 10(22), 4785 (1998)
22. J.B. Pendry, A.J._ Holden, D.J. Robbins, W.J. Stewart, Magnetism from conductors and
enhanced nonlinear phenomena. IEEE Trans. Microw Theory Tech. 47(11), 2075–2084 (1999)
23. W. Cai, V.M. Shalaev. Optical Metamaterials, vol. 10 (Springer, 2010)
© The Editor(s) (if applicable) and The Author(s), under exclusive license to Springer
Nature Singapore Pte Ltd. 2021
N. Shankhwar and R. K. Sinha, Zero Index Metamaterials,
https://doi.org/10.1007/978-981-16-0189-7
133
