Serveur d'exploration sur le thulium - Curation (Pascal)

Index « FA11s1.i » - entrée « LAVROV (A. N.) »
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LAVIZINA (O. V.) < LAVROV (A. N.) < LAWLER (J. E.)  Facettes :

List of bibliographic references

Number of relevant bibliographic references: 10.
Ident.Authors (with country if any)Title
000D85 (2001) M. Yu. Kameneva [Russie] ; L. P. Kozeeva [Russie] ; A. N. Lavrov [Russie] ; E. V. Sokol [Russie] ; V. E. Fedorov [Russie]Dendritic growth of TmBa2Cu3O6+x single crystals
001119 (1998-12-21) A. N. Lavrov [Russie] ; M. Yu. Kameneva [Russie] ; L. P. Kozeeva [Russie]Normal-State Resistivity Anisotropy in Underdoped RBa2Cu3O6+x Crystals
001122 (1998) A. N. Lavrov [Russie] ; L. P. Kozeeva [Russie]Effect of low-temperature oxygen ordering on the properties of RBa2Cu3O6+x (R = Y, Tm, Lu) single crystals
001149 (1998) A. N. Lavrov [Russie] ; L. P. Kozeeva [Russie]Antiferromagnetism and superconductivity in RBa2Cu3O6+x (R = Y, Tm, Lu)
001223 (1997-12-10) E. B. Amitin [Russie] ; V. Ya. Dikovskii ; A. N. Lavrov ; A. P. ShelkovnikovScaling in the ab resistivity of TmBaCuO single crystals in the normal state
001300 (1996-12-10) V. Ya. Dikovskii ; A. N. Lavrov ; L. P. Kozeeva ; E. V. Matizen ; A. P. ShelkovnikovOn the applicability of the resonance tunneling model for describing conductivity anisotropy in TmBCO single crystals
001322 (1996-05-25) A. N. Lavrov [Russie] ; L. P. Kozeeva [Russie]Low-temperature (T<180 K) relaxation processes and possible ′′electronic phase separation′′ in RBa2Cu3O6+x (R = Y, Tm, Lu) single crystals
001518 (1995) A. N. Lavrov [Russie] ; L. P. KozeevaStudy of the antiferromagnetic and superconducting phase boundaries in RBa2Cu3O6+x (R=Tm, Lu). II: Influence of low-temperature oxygen ordering on TN and Tc
001528 (1995-10-10) A. N. Lavrov [Russie] ; L. P. Kozeeva [Russie]Competition between antiferromagnetism and superconductivity in RBa2Cu3O6+x (R = Lu, Tm)
001569 (1995) A. N. Lavrov [Russie] ; L. P. KozeevaStudy of the antiferromagnetic and superconducting phase boundaries in RBa2Cu3O6+x (R=Tm, Lu). I: Anisotropic resistivity anomaly at the Néel temperature

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