Superconductivity in diamond (original) (raw)
References
- Field, J. E. The Properties of Natural and Synthetic Diamond (Academic, New York, 1992)
Google Scholar - May, P. W. Diamond thin films: a 21st-century material. Phil. Trans. R. Soc. Lond. A 358, 473–495 (2000)
Article ADS CAS Google Scholar - Kalish, R. The search for donors in diamond. Diamond Relat. Mater. 10, 1749–1755 (2001)
Article ADS CAS Google Scholar - Geis, M. W., Twitchell, J. C., Macauley, J. & Okano, K. Electron field emission from diamond and other carbon materials after H2, O2 and Cs treatment. Appl. Phys. Lett. 67, 1328–1330 (1995)
Article ADS CAS Google Scholar - Teukam, Z. et al. Shallow donors with high n-type electrical conductivity in homoepitaxial deuterated boron-doped diamond layers. Nature Mater. 2, 482–486 (2003)
Article ADS CAS Google Scholar - Garrido, J. A. et al. Fabrication of in-plane gate transistors on hydrogenated diamond surfaces. Appl. Phys. Lett. 82, 988–990 (2003)
Article ADS CAS Google Scholar - Williams, A. W. S., Lightowlers, E. C. & Collins, A. T. Impurity conduction in synthetic semiconducting diamond. J. Phys. C 3, 1727–1735 (1970)
Article ADS CAS Google Scholar - Vishnevskii, A. S., Gontar', A. G., Torishnii, V. I. & Shul'zhenko, A. A. Electrical conductivity of heavily doped p-type diamond. Sov. Phys. Semicond. 15, 659–661 (1981)
Google Scholar - Werner, M. et al. Charge transport in heavily B-doped, polycrystalline diamond films. Appl. Phys. Lett. 64, 595–597 (1994)
Article ADS CAS Google Scholar - Borst, T. H. & Weis, O. Boron-doped homoepitaxial diamond layers: fabrication, characterization and electronic applications. Phys. Status Solidi A 154, 423–444 (1996)
Article ADS CAS Google Scholar - Zhang, R. J., Lee, S. T. & Lam, Y. W. Characterization of heavily boron-doped diamond films. Diamond Relat. Mater. 5, 1288–1294 (1996)
Article ADS CAS Google Scholar - Eremets, M. I., Struzhkin, V. V., Mao, H.-K. & Hemley, R. J. Superconductivity in boron. Science 293, 272–274 (2001)
Article ADS CAS PubMed Google Scholar - Werthamer, N. R., Helfand, E. & Hohenberg, P. C. Temperature and purity dependence of the superconducting critical field Hc2. III. Electron spin and spin-orbit effects. Phys. Rev. 147, 295–302 (1966)
Article ADS CAS Google Scholar - McMillan, W. L. Transition temperature of strongly coupled superconductors. Phys. Rev. 167, 331–344 (1968)
Article ADS CAS Google Scholar - Gurevich, V. L., Larkin, A. I. & Firsov, Yu. A. On the possibility of superconductivity in semiconductors. Sov. Phys. Solid State 4, 131–135 (1962)
Google Scholar - Cohen, M. L. Superconductivity in many-valley semiconductors and in semimetals. Phys. Rev. 134, A511–A521 (1964)
Article ADS Google Scholar - Cohen, M. L. in Superconductivity (ed. Parks, R. D.) Vol. 1, 615–644 (Marcel Dekker, New York, 1969)
Google Scholar - Kohmoto, M. & Takada, Y. Superconductivity from an insulator. J. Phys. Soc. Jpn 59, 1541–1544 (1990)
Article ADS Google Scholar - Nozières, P. & Pistolesi, F. From semiconductors to superconductors: a simple model for pseudogaps. Eur. Phys. J. B 10, 649–662 (1999)
Article ADS Google Scholar - Hulm, J. K., Ashkin, M., Deis, D. W. & Jones, C. K. in Progress in Low Temperature Physics (ed. Gorter, C. J.) Vol. VI, 205–242 (North-Holland, Amsterdam, 1970)
Google Scholar - Kawaji, H., Horie, H., Yamanaka, S. & Ishikawa, M. Superconductivity in the silicon clathrate compound (Na,Ba)xSi46 . Phys. Rev. Lett. 74, 1427–1429 (1995)
Article ADS CAS PubMed Google Scholar - Grosche, F. M. et al. Superconductivity in the filled cage compounds Ba6Ge25 and Ba4Na2Ge25 . Phys. Rev. Lett. 87, 247003 (2001)
Article ADS CAS PubMed Google Scholar - Khvostantsev, L. G., Vereshchagin, L. F. & Novikov, A. P. Device of toroid type for high pressure generation. High Temp. High Press. 9, 637–639 (1977)
Google Scholar - Voronov, O. A. & Rakhmanina, A. V. Parameter of the cubic cell of diamond doped with boron. Inorg. Mater. 29, 707–710 (1993)
Google Scholar - Brunet, F., Deneuville, A., Germi, P., Pernet, M. & Gheeraert, E. Variation of the cell parameter of polycrystalline boron doped diamond films. J. Appl. Phys. 81, 1120–1125 (1997)
Article ADS CAS Google Scholar - Bean, C. P. Magnetization of hard superconductors. Phys. Rev. Lett. 8, 250–253 (1962)
Article ADS Google Scholar