PACS numbers

61.46.Np Structure of nanotubes (hollow nanowires) 61.48.De Structure of carbon nanotubes, boron nanotubes, and other related systems 77.22.−d Dielectric properties of solids and liquids 85.35.Kt Nanotube devices
  1. I.N. Toptygin, K. Levina “Energy—momentum tensor of the electromagnetic field in dispersive media59 141–152 (2016)
    03.50.De, 41.20.−q, 77.22.−d (all)
  2. M.V. Kharlamova “Electronic properties of pristine and modified single-walled carbon nanotubes56 1047–1073 (2013)
    61.46.Np, 61.48.De, 77.22.−d, 85.35.Kt (all)
  3. V.A. Gritsenko “Electronic structure of silicon nitride55 498–507 (2012)
    71.15.Mb, 71.23.−k, 77.22.−d, 77.55.df, 77.84.Bw, 78.20.−e (all)
  4. A.V. Eletskii “Carbon nanotube-based electron field emitters53 863–892 (2010)
    73.63.Fg, 85.35.Kt, 85.45.Db (all)
  5. A.I. Vorob’eva “Equipment and techniques for carbon nanotube research53 257–277 (2010)
    61.48.De, 73.63.−b, 81.05.ue (all)
  6. A.I. Vorob’eva “Fabrication techniques of electrode arrays for carbon nanotubes52 225–234 (2009)
    73.63.Fg, 85.35.Kt, 85.40.−e (all)
  7. M.A. Mikaelyan “Methodological aspects of the thermodynamics of dielectrics41 1219–1227 (1998)
    77.22.−d
  8. M.P. Tonkonogov “Dielectric spectroscopy of hydrogen-bonded crystals, and proton relaxation41 25–48 (1998)
    61.66.Fn, 61.90.+d, 77.22.−d (all)
  9. O.E. Kvyatkovskii, E.G. Maksimov “Microscopic theory of the lattice dynamics and the nature of the ferroelectric instability in crystals31 1–26 (1988)
    77.80.Dj, 77.80.Bh, 77.84.−s, 77.22.−d (all)
  10. A.S. Sonin “Lyotropic nematics30 875–896 (1987)
    61.30.St, 61.30.Gd, 64.70.Md, 78.20.Ci, 62.40.+i, 77.22.−d (all)
  11. B.A. Volkov, O.A. Pankratov “Electronic structure of quasicubic crystals: energy bands, dielectric properties, and defects in narrow-gap semiconductors.29 575–577 (1986)
    71.23.Ft, 77.22.−d, 71.55.Ht (all)
  12. A.N. Kozlova, Yu.A. Khvorov “The new physics demonstrations9 916–917 (1967)
    41.20.Jb, 77.22.−d, 84.40.Az, 84.40.Ba (all)
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