Publications

 

  1. Integrated sensing in structural composites.
    A. Starr, S. N. Nemat-Nasser, D. R. Smith and T. A. Plaisted
    in Structural Health Monitoring 2003, Ed. Fu-Kuo Chang, 879 (2003)


  2. The reality of negative refraction.
    D. R. Smith
    Physics World, 16, 23 (2003)


  3. Terahertz plasmonic high pass filter.
    D. Wu, N. Fang, C. Sun, X. Zhang, W. J. Padilla, D. N. Basov, D. R. Smith and S Schultz
    Appl. Phys. Lett., 83, 201 (2003)

  4. Local refractive index dependence of plasmon resonance spectra from individual nanoparticles.
    J. J. Mock, D. R. Smith and S. Schultz
    Nano Letters, 3, 485 (2003)

  5. Numerical study of electromagnetic waves interacting with negative index materials.
    P. Kolinko and D. R. Smith
    Optics Express, 11, 640 (2003)

  6. Spatial filtering using media with indefinite permittivity and permeability tensors.
    D. Schurig and D. R. Smith
    Appl. Phys. Lett., 82, 2215 (2003)

  7. Limitations on sub-diffraction imaging with a negative refractive index slab.
    D. R. Smith, D. Schurig, M. Rosenbluth, S. Schultz, S. A. Ramakrishna and J. B. Pendry
    Appl. Phys. Lett., 82, 1506 (2003)

  8. Electromagnetic wave propagation in media with indefinite permittivity and permeability tensors .
    D. R. Smith and D. Schurig
    Phys. Rev. Lett., 90, 77405 (2003)

  9. The asymmetric lossy near-perfect lens.
    S. A. Ramakrishna, J. B. Pendry, D. Schurig, D. R. Smith and S. Schultz
    J. Mod. Opt., 49, 1747 (2002)

  10. Composite plasmon resonant nanowires.
    J. J. Mock, S. J. Oldenburg, D. R. Smith, D. A. Schultz and S. Schultz
    Nano Letters, 2, 465 (2002)

  11. Single crystal silver nanowires prepared by the metal amplification method.
    M. Barbic, J. J. Mock, D. R. Smith and S. Schultz
    J. Appl. Phys., 91, 9341 (2002)

  12. Negative refraction of modulated electromagnetic waves.
    D. R. Smith, D. Schurig and J. B. Pendry
    Appl. Phys. Lett., 81, 2713 (2002)

  13. Shape effects in plasmon resonance of individual colloidal silver nanoparticles.
    J. J. Mock, M. Barbic, D. R. Smith, D. A. Schultz and S. Schultz
    J. Chem. Phys., 116, 6755 (2002)

  14. Determination of effective permittivity and permeability of metamaterials from reflection and transmission coefficients.
    D. R. Smith, S. Schultz, P. Markos and C. M. Soukoulis
    Physical Review B, 65, 195104 (2002)

  15. Scattering properties of nanoparticles with arbitrary shape.
    J. D. Kottman, O. J. F. Martin, D. R. Smith and S. Schultz
    Chem. Phys. Lett., 341, 1 (2001)

  16. Calculation of S-parameters for a left-handed metamaterial and comparison with experimental data.
    T. Weiland, R. Schuhmann, R. Greegor, C. Parazzoli, A. Vetter, D. R. Smith, D. C. Vier and S. Schultz
    J. Appl. Phys., 90, 5419 (2001)

  17. Experimental verification of a negative index of refraction.
    R. Shelby, D. R. Smith and S. Schultz
    Science, 292, 77 (2001)

  18. Microwave transmission through a two-dimensional, isotropic, left-handed metamaterial
    R. A. Shelby, D. R. smith, S. C. Nemat-Nasser and S. Schultz
    Appl. Phys. Lett., 78, 4 (2001)

  19. Left-handed metamaterials
    D. R. Smith, W. J. Padilla, D. C. Vier, R. Shelby, S. C. Nemat-Nasser, N. Kroll and S. Schultz
    in Photonic Crystals and Light Localization, ed. C. M. Soukoulis
    (Klumer, Netherlands, 2000)

  20. Field polarization and polarization charge distributions in plasmon resonant nanoparticles
    J. P. Kottman, O. J. F. Martin, D. R. Smith and S. Schultz
    New J. Phys., 2, 27.1 (2000)

  21. Non-regularly shaped plasmon resonant nanoparticle as localized light source for near-field microscopy
    J. P. Kottman, O. J. F. Martin, D. R. Smith and S. Schultz
    J. of Microscopy, 202, 60 (2001)

  22. Direct calculation of permeability and permittivity for a left-handed metamaterial
    D. R. smith, D. C. Vier, N. Kroll and S. Schultz
    Appl. Phys. Lett., 77, 2246 (2000)

  23. Negative refractive index in left-handed materials
    D. R. Smith and N. Kroll
    Phys. Rev. Lett., 85, 2933 (2000)

  24. Spectral response of plasmon resonant nanoparticles with a non-regular shape
    J. P. Kottman, O. J. F. Martin, D. R. Smith and S. Schultz
    Optics Express, 6, 213 (2000)

  25. A Composite medium with simultaneously negative permeability and permittivity
    D. R. smith, Willie J. Padilla, D. C. Vier, S. C. Nemat-Nasser and S. Schultz
    Phys. Rev. Lett., 84, 4184 (2000)

  26. Single target molecule detection with non-bleaching multicolor optical immunolabels
    S. Schultz, D. R. Smith, J. J. Mock and D. A. Schultz
    Proceedings of the National Academy of Sciences, 97, 3 (2000)

  27. Nanoparticle based biological assays
    S. Schultz, J. J. Mock, D. R. Smith and D. A. Schultz
    Journal of Clinical Ligand Assay, 22, 214 (1999)

  28. Photonic band gap accelerator cavity design at 90 GHz
    N. Kroll, S. Schultz, D. R. Smith and D. C. Vier
    Proceedings of the Particle Accelerator Conference, 2, 830 (1999)

  29. Loop-wire medium for investigating plasmons at microwave frequencies
    D. R. smith, D. C. Vier, W. J. Padilla, S. C. Nemat-Nasser and S. Schultz
    Appl. Phys. Lett., 75, 1425 (1999)

  30. Generalized field propagator for arbitrary finite size photonic band gap structures
    O. J. F. Martin, C. Girard, D. R. Smith and S. Schultz
    Phys. Rev. Lett., 82, 315 (1999)

  31. Wake-field studies on photonic band gap accelerator cavities
    Derun Li, N. Kroll, D. R. Smith and S. Schultz
    Proceedings of the Seventh Workshop on Advanced Accelerator Concepts
    Lake Tahoe, California, 12-18 October (1996)

  32. Recent progress on photonic band gap accelerator cavities
    D. R. Smith, Derun Li, D. C. Vier, N. Kroll and S. Schultz
    Proceedings of the Seventh Workshop on Advanced Accelerator Concepts
    Lake Tahoe, California, 12-18 October (1996)

  33. Experimental and theoretical study of dipole emission in the two-dimensional photonic band structure of the square lattice with dielectric cylinders
    T. Suzuki, P. Yu, D. R. Smith and S. Schultz
    J. Appl. Phys., 79, 582 (1996)

  34. Analytic and quasi-analytic formulae for MR heads
    S. Shtrikman and D. R. Smith
    IEEE Trans. Mag., 32, 43 (1996)

  35. Design considerations for a 2-D photonic band gap cavity
    D. R. Smith, N. Kroll and S. Schultz
    in Photonic Band Gap Materials, Ed. C. M. Soukoulis
    NATO ASI Series, 315, 391 (1996)

  36. Analytical formulas for the unshielded magnetoresistive head
    S. Shtrikman and D. R. Smith
    IEEE Trans. Mag., 32, 1987 (1995)

  37. Studies on a metal photonic band gap cavity
    D. R. Smith, N. Kroll and S. Schultz
    Proceedings of the Third Workshop on Advanced Accelerator Concepts
    Lake Geneva, Wisconsin, 12-18 June (1994)

  38. Experimental and theoretical results for a two dimensional metal photonic band gap cavity
    D. R. Smith, S. Schultz, M. Sigalas, K. M. Ho and C. M. Soukoulis
    Appl. Phys. Lett., 65, 645 (1994)

  39. Defect studies in a two-dimensional periodic photonic lattice
    D. R. Smith, S. Schultz, M. Sigalas, K. M. Ho and C. M. Soukoulis
    Appl. Phys. Lett., 65, 645 (1994)

  40. Photonic band gap accelerators
    S. Schultz, D. R. Smith and N. Kroll
    Proceedings of the 1993 Particle Accelerator Conference
    Washington D. C., 17-20 May (1993)

  41. Photonic band structure and defects in one and two dimensions
    D. R. Smith, R. Dalichaouch, N. Kroll, S. Schultz, S. L. McCall, P. M. Platzman
    J. Opt. Soc. Am. B., 10, 314 (1993)

  42. Measurements of localization and photonic band gap systems in two dimensions
    D. R. Smith and S. Schultz
    in Photonic Band Gaps and Localization, Ed. C. M. Soukoulis
    NATO ASI Series, 308, NY (1993)

  43. Analytic analysis of a dual magnetoresistive head
    N. Smith, D. R. Smith and S. Shtrikman
    IEEE Trans. Mag., 28, 2295 (1992)

  44. Photonic band gap structures: a new approach to accelerator cavities
    N. Kroll, D. R. Smith and S. Schultz
    Third Advanced Accelerator Concepts Workshop
    Port Jefferson, NY, 14-20 June (1992)

  45. Microwave photon propagation in two-dimensional dielectric lattices
    S. L. McCall, P. M. Platzman, R. Dalichaouch, D. R. Smith and S. Schultz
    Phys. Rev. Lett., 67, 2017 (1991)