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Haberkorn, N.; Bengio, S.; Suárez, S.; Pérez, P.D.; Hofer, J.A.; Sirena, M. Effect of thermal annealing and irradiation damage on the superconducting critical temperature of nanocrystalline γ-Mo2N thin films 2019 Materials Letters 236 252-255
Haberkorn, N.; Bridoux, G.; Osquiguil, E.; Nieva, G.; Guimpel, J. Hall effect in a GdBa2Cu3O7-?/La0.75 Sr0.25MnO3 perovskite bilayer 2007 Applied Surface Science 254 222-224
Morán, M.J.; Condó, A.M.; Soldera, F.; Sirena, M.; Haberkorn, N. Martensitic transformation in freestanding and supported Cu–Al–Ni thin films obtained at low deposition temperatures 2016 Materials Letters 184 177
Pozo-López, G.; Condó, A.M.; Fabietti, L.M.; Winkler, E.; Haberkorn, N.; Urreta, S.E. Microstructure of as-cast single and twin roller melt-spun Ni2MnGa ribbons 2017 Materials Characterization 124 171-181
Domenichini, P., Condó, A. M., Haberkorn, N. Structural characterization of FeePd nanowires grown by electrodeposition using an acid electrolyte 2016 Materials Chemistry and Physics 177 164-170
Kaul, E.E.; Haberkorn, N.; Guimpel, J. Crystalline orientation of BiMnO3 thin films grown by rf-sputtering 2007 Applied Surface Science 254 160-163
Guimpel, J.; Haberkorn, N.; Sirena, M.; Steren, L.B.; Saldarriaga, W.; Baca, E.; Gomez, M.E. Interface effects in perovskite superlattices 2004 JOURNAL OF LOW TEMPERATURE PHYSICS 135 115-118
Haberkorn, N.; Troiani, H.; Condó, A.M.; Wang, H.; Mao, Q.; Fang, M. Vortex dynamics in phase separated Tl0.58Rb0.42Fe1.72Se2 crystals 2016 Solid State Communications 247 88
Kim, J.; Haberkorn, N.; Nazaretski, E.; Paula, R. de; Tan, T.; Xi, X.X.; Tajima, T.; Movshovich, R.; Civale, L. Strong magnetic field dependence of critical current densities and vortex activation energies in an anisotropic clean MgB2 thin film 2015 Solid State Communications 204 56-60
Haberkorn, N.; Bengio, S.; Troiani, H.; Suárez, S.; Pérez, P.D.; Granell, P.; Golmar, F.; Sirena, M.; Guimpel, J. Thickness dependence of the superconducting properties of γ- Mo<inf>2</inf>N thin films on Si (001) grown by DC sputtering at room temperature 2018 Materials Chemistry and Physics 204 48-57