Search Results - "Marcenat, C"

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  1. 1

    Thermodynamic signatures of quantum criticality in cuprate superconductors by Michon, B., Girod, C., Badoux, S., Kačmarčík, J., Ma, Q., Dragomir, M., Dabkowska, H. A., Gaulin, B. D., Zhou, J.-S., Pyon, S., Takayama, T., Takagi, H., Verret, S., Doiron-Leyraud, N., Marcenat, C., Taillefer, L., Klein, T.

    Published in Nature (London) (01-03-2019)
    “…The three central phenomena of cuprate (copper oxide) superconductors are linked by a common doping level p* —at which the enigmatic pseudogap phase ends and…”
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  2. 2

    Field-Induced Tuning of the Pairing State in a Superconductor by Rosuel, A., Marcenat, C., Knebel, G., Klein, T., Pourret, A., Marquardt, N., Niu, Q., Rousseau, S., Demuer, A., Seyfarth, G., Lapertot, G., Aoki, D., Braithwaite, D., Flouquet, J., Brison, J. P.

    Published in Physical review. X (01-01-2023)
    “…The recently discovered superconductorUTe2, with a superconducting transition temperatureTcbetween 1.5 and 2 K, is attracting much attention due to strong…”
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    Calorimetric determination of the magnetic phase diagram of underdoped ortho II YBa2Cu3O6.54 single crystals by Marcenat, C., Demuer, A., Beauvois, K., Michon, B., Grockowiak, A., Liang, R., Hardy, W., Bonn, D. A., Klein, T.

    Published in Nature communications (21-08-2015)
    “…The recent discovery of a charge order in underdoped YBa 2 Cu 3 O y raised the question of the interplay between superconductivity and this competing phase…”
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  5. 5

    Dependence of the superconducting transition temperature on the doping level in single-crystalline diamond films by BUSTARRET, E, KACMARCIK, J, MARCENAT, C, GHEERAERT, E, CYTERMANN, C, MARCUS, J, KLEIN, T

    Published in Physical review letters (03-12-2004)
    “…Homoepitaxial diamond layers doped with boron in the 10(20)-10(21) cm(-3) range are shown to be type II superconductors with sharp transitions (approximately…”
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  6. 6

    Superconductivity in doped cubic silicon by Débarre, D, Boulmer, J, Ka mar ik, J, Blase, X, Bourgeois, E, Huxley, A, Marcenat, C, Achatz, P, Lévy, F, Ortéga, L, Bustarret, E

    Published in Nature (23-11-2006)
    “…Although the local resistivity of semiconducting silicon in its standard crystalline form can be changed by many orders of magnitude by doping with elements,…”
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    Metal-insulator transition and superconductivity in boron-doped diamond by Klein, T., Achatz, P., Kacmarcik, J., Marcenat, C., Gustafsson, F., Marcus, J., Bustarret, E., Pernot, J., Omnes, F., Sernelius, Bo E., Persson, C., Ferreira da Silva, A., Cytermann, C.

    “…We report on a detailed analysis of the transport properties and superconducting critical temperatures of boron-doped diamond films grown along the $\{100\}$…”
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  9. 9

    Vortex-lattice melting and paramagnetic depairing in the nematic superconductor FeSe by Hardy, F., Doussoulin, L., Klein, T., He, M., Demuer, A., Willa, R., Willa, K., Haghighirad, A.-A., Wolf, T., Merz, M., Meingast, C., Marcenat, C.

    Published in Physical review research (27-08-2020)
    “…The full H-T phase diagram in the nematic superconductor FeSe is mapped out using heat-capacity and thermal-expansion measurements down to 0.7 K and up to 30 T…”
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  10. 10

    Field-induced Bose-Einstein condensation of triplons up to 8 K in Sr3Cr2O8 by Aczel, A A, Kohama, Y, Marcenat, C, Weickert, F, Jaime, M, Ayala-Valenzuela, O E, McDonald, R D, Selesnic, S D, Dabkowska, H A, Luke, G M

    Published in Physical review letters (13-11-2009)
    “…Single crystals of the spin dimer system Sr(3)Cr(2)O(8) have been grown for the first time. Magnetization, heat capacity, and magnetocaloric effect data up to…”
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    Silicon superconducting quantum interference device by Duvauchelle, J. E., Francheteau, A., Marcenat, C., Chiodi, F., Débarre, D., Hasselbach, K., Kirtley, J. R., Lefloch, F.

    Published in Applied physics letters (17-08-2015)
    “…We have studied a Superconducting Quantum Interference Device (SQUID) made from a single layer thin film of superconducting silicon. The superconducting layer…”
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  12. 12

    Evidence for two superconducting energy gaps in MgB2 by point-contact spectroscopy by Szabo, P., Samuely, P., Kacmarcik, J., Klein, Thierry, Marcus, J., Fruchart, Daniel, Miraglia, Salvatore, Marcenat, C., Jansen, A. G. M.

    Published in Physical review letters (2001)
    “…Experimental support is found for the multiband model of the superconductivity in the recently discovered system MgB2 with the transition temperature Tc = 39…”
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  13. 13

    Tunneling spectroscopy and vortex imaging in boron-doped diamond by Sacépé, B, Chapelier, C, Marcenat, C, Kacmarcik, J, Klein, T, Bernard, M, Bustarret, E

    Published in Physical review letters (10-03-2006)
    “…We present the first scanning tunneling spectroscopy study of single-crystalline boron-doped diamond. The measurements were performed below 100 mK with a low…”
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  14. 14

    Highly doped Si and Ge formed by GILD (gas immersion laser doping); from GILD to superconducting silicon by Cammilleri, D., Fossard, F., Débarre, D., Tran Manh, C., Dubois, C., Bustarret, E., Marcenat, C., Achatz, P., Bouchier, D., Boulmer, J.

    Published in Thin solid films (03-11-2008)
    “…Gas Immersion Laser Doping (GILD) of silicon with boron has shown excellent performances in terms of junction depth, box-like profile, dopant concentration and…”
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    Journal Article Conference Proceeding
  15. 15

    Metal-to-insulator transition and superconductivity in boron-doped diamond by Bustarret, E., Achatz, P., Sacépé, B., Chapelier, C., Marcenat, C., Ortéga, L., Klein, T.

    “…The experimental discovery of superconductivity in boron-doped diamond came as a major surprise to both the diamond and the superconducting materials…”
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  16. 16

    Gas Immersion Laser Doping for superconducting nanodevices by Chiodi, F., Grockowiak, A., Duvauchelle, J.E., Fossard, F., Lefloch, F., Klein, T., Marcenat, C., Débarre, D.

    Published in Applied surface science (30-05-2014)
    “…•Superconducting silicon can be grown epitaxially by Gas Immersion Laser Doping.•We have grown superconducting Si/metallic Si bilayers with sharp ohmic…”
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    Journal Article Conference Proceeding
  17. 17

    Thickness dependence of the superconducting critical temperature in heavily doped Si:B epilayers by Grockowiak, A., Klein, T., Cercellier, H., Lévy-Bertrand, F., Blase, X., Kačmarčik, J., Kociniewski, T., Chiodi, F., Débarre, D., Prudon, G., Dubois, C., Marcenat, C.

    “…We report on the superconducting properties of a series of heavily doped Si:B epilayers grown by gas immersion laser doping with boron content (n sub(B))…”
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  18. 18

    Low-temperature transition to a superconducting phase in boron-doped silicon films grown on (001)-oriented silicon wafers by Marcenat, C., Kačmarčík, J., Piquerel, R., Achatz, P., Prudon, G., Dubois, C., Gautier, B., Dupuy, J. C., Bustarret, E., Ortega, L., Klein, T., Boulmer, J., Kociniewski, T., Débarre, D.

    “…We report on a detailed analysis of the superconducting properties of boron-doped silicon films grown along the 001 direction by gas immersion laser doping…”
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  19. 19

    Low-temperature transport in highly boron-doped nanocrystalline diamond by Achatz, P., Gajewski, W., Bustarret, E., Marcenat, C., Piquerel, R., Chapelier, C., Dubouchet, T., Williams, O. A., Haenen, K., Garrido, J. A., Stutzmann, M.

    “…We studied the transport properties of highly boron-doped nanocrystalline diamond thin films at temperatures down to 50 mK. The system undergoes a…”
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  20. 20

    Anisotropy of the upper critical field and critical current in single crystal MgB2 by Lyard, L., Samuely, P., Szabo, P., Klein, Thierry, Marcenat, C., Paulius, L., Kim, K.H.P., Jung, C.U., Lee, H.-S., Kang, B., Choi, S., Lee, S.-I., Marcus, J., Blanchard, S., Jansen, A.G.M., Welp, U., Karapetrov, G., Kwok, W.K.

    “…We report on specific-heat, high-magnetic-field transport, and ac-susceptibility measurements on MgB2 single crystals. The upper critical field for magnetic…”
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