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54. F.J. Himpsel, J.E. Ortega, G.J. Mankey, R.F. Willis, Magnetic nanostructures. Adv. Phys. 47 ,
511 (1998)
55. M. Milum, P. Pervan, D.P. Woodruff, Quantum well structures in thin metal films: simple
model physics in reality. Rep. Prog. Phys. 65 , 99 (2002)
56. B. Allen, R.-C. Dynes, Transition temperature of strong-coupled superconductors reanalyzed.
Phys.Rev.B 12 , 905 (1975)
57. A. Crottini, D. Cvetko, L. Floreano, R. Gotter, A. Morgante, F. Tommasini, Step height oscil-
lations during layer-by-layer growth of Pb on Ge(001). Phys. Rev. Lett. 79 , 1527 (1997)
58. Y.F. Zhang, J.F. Jia, T.Z. Han, Z. Tang, Q.T. Shen, Y. Guo, Z.Q. Qiu, Q.K. Xue, Band structure
and oscillatory electron-phonon coupling of Pb thin films determined by atomic-layer-resolved
quantum-well states. Phys. Rev. Lett. 95 , 096802 (2005)
59. F. Yndurain, M.P. Jigato, First principles calculation of localized surface phonons and
electron-phonon interaction at Pb(111) thin films. Phys. Rev. Lett. 100 , 205501 (2008)
60. J. Kosterlitz, D. Thouless, Ordering, metastability and phase transitions in two-dimensional
systems. J. Phys. C 6 , 1181 (1973)
61. D.B. Haviland, Y. Liu, A.M. Goldman, Onset of superconductivity in the two-dimensional
limit. Phys. Rev. Lett. 62 , 2180 (1989)
62. I. Vilfan, M. Henzler, O. Pfennigstorf, H. Pfnür, Anomalous thickness dependence of the hall
effect in ultrathin Pb layers on Si(111). Phys. Rev. B. 66 , 241306 (2002)
63. I. Vilfan, H. Pfnür, Charge-carrier transport properties of ultrathin Pb films. Eur. Phys. J. B.
36 , 281 (2003)
64. J. Simonin, Surface term in the superconductive Ginzburg-Landau free energy: application to
thin films. Phys. Rev. B 33 , 7830 (1986)
65. R.C. Dynes, J.M. Rowell, Influence of electrons-per-atom ratio and phonon frequencies on the
superconducting transition temperature of lead alloys. Phys. Rev. B 11 , 1884 (1975)
66. S. Qin, J. Kim, Q. Niu, C.K. Shih, Superconductivity at the two-dimensional limit. Science
324 , 1314 (2009)
67. H.H. Weitering, The world's thinnest superconductor. Chem. Phys.Chem. 10 , 1 (2009)
68. G.J. Dolan, J. Silcox, Critical thicknesses in superconducting thin films. Phys. Rev. Lett. 30 ,
603 (1973)
69. M. Valden, X. Lai, D.W. Goodman, Onset of catalytic activity of gold clusters on titania with
the appearance of nonmetallic properties. Science 281 , 1647 (1998)
70. M.S. Chen, D. Kumar, C.-W. Yi, D.W. Goodman, The promotional effect of gold in catalysis
by palladium-gold. Science 310 , 291 (2005)
71. M.S. Chen, Y. Cai, Z. Yan, D.W. Goodman, On the origin of the unique properties of supported
Au nanoparticles. J. Am. Chem. Soc. 128 , 6341 (2006)
72. M.S. Chen, D.W. Goodman, Structure-activity relationships in supported Au catalysts. Catal.
Today 111 , 22-23 (2006)
73. N. Binggeli, M. Altarelli, Surface reactivity and quantum-size effects on the electronic density
decay length of ultrathin metal films. Phys. Rev. Lett. 96 , 036805 (2006)
74. J.K. Norskov, Chemisorption on metal surfaces. Rep. Prog. Phys. 53 , 1253 (1990)
75. N. Trivedi, N.W. Ashcroft, First-principles study of quantum size effects in ultrathin Pb-Bi
metal alloy films. Phys. Rev. B. 38 , 12298 (1988)
76. A. Gurevich, S. Patnaik, V. Braccini, K.H. Kim, C. Mielke, X. Song, L.D. Cooley, S.D. Bu,
D.M.Kim,J.H.Choi,L.J.Belenky,J.Giencke,M.K.Lee,W.Tian,X.Q.Pan,A.Siri,E.E.
Hellstrom, C.B. Eom, D.C. Larbalestier, Very high upper critical fields in MgB 2 produced by
selective tuning of impurity scattering. Supercond. Sci. Tech. 17, 278 (2004)
77. M. Mansor, J.P. Carbotte
,
Upper critical field in two-band superconductivity. Phys. Rev. B 72 ,
024538 (2005)
78. Z.Q. Qiu, N.V. Smith, Quantum well states and oscillatory magnetic interlayer coupling.
J. Phys Condens. Matter 14 , R169 (2002)
79. A. Dayo, W. Alnasrallah, J. Krim, Superconductivity-dependent sliding friction. Phys. Rev.
Lett. 80 , 1690 (1998)
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