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Paolo Maria Eugenio Icilio Allia - One of the best experts on this subject based on the ideXlab platform.
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Magnetic correlation among nanosized Co particles in CuCo heterogeneous thin films
Journal of Magnetism and Magnetic Materials, 1999Co-Authors: Paolo Maria Eugenio Icilio Allia, Paola Tiberto, Franco Vinai, L. Pareti, G. TurilliAbstract:Room temperature measurements of Magnetisation and giant magnetoresistance were performed on heterogeneous CuCo thin films produced with different thickness by means of RF sputtering. Average particle size, particle size distribution, volume fraction of particles were obtained from Magnetisation Curve analysis. A correlation among moments was found in all examined systems, depending on film thickness.
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Magnetic correlation among nanosized Co particles in CuCo heterogeneous thin films
Journal of Magnetism and Magnetic Materials, 1999Co-Authors: Paolo Maria Eugenio Icilio Allia, Paola Tiberto, Franco Vinai, L. Pareti, G. TurilliAbstract:Room temperature measurements of Magnetisation and giant magnetoresistance were performed on heterogeneous CuCo thin films produced with different thickness by means of RF sputtering. Average particle size, particle size distribution, volume fraction of particles were obtained from Magnetisation Curve analysis. A correlation among moments was found in all examined systems, depending on him thickness. (C) 1999 Elsevier Science B.V. All rights reserved
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Grain size distribution in granular Cu100−xCox through anhysteretic Magnetisation Curve analysis
Journal of Magnetism and Magnetic Materials, 1996Co-Authors: Paolo Maria Eugenio Icilio Allia, Paola Tiberto, F. Ghigo, M. Knobel, F. VinaiAbstract:Abstract The Magnetisation of melt-spun, granular Cu 100− x Co x ( x = 5, 15) was measured at room temperature on as-cast and Joule-heated samples. The particle size distribution and the volume density of Co clusters were obtained by fitting the anhysteretic Magnetisation Curves with four Langevin functions, corresponding to Co particles of definite radii.
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grain size distribution in granular cu100 xcox through anhysteretic Magnetisation Curve analysis
Journal of Magnetism and Magnetic Materials, 1996Co-Authors: Paolo Maria Eugenio Icilio Allia, F. Ghigo, M. Knobel, P. Tiberto, F. VinaiAbstract:Abstract The Magnetisation of melt-spun, granular Cu 100− x Co x ( x = 5, 15) was measured at room temperature on as-cast and Joule-heated samples. The particle size distribution and the volume density of Co clusters were obtained by fitting the anhysteretic Magnetisation Curves with four Langevin functions, corresponding to Co particles of definite radii.
F. Vinai - One of the best experts on this subject based on the ideXlab platform.
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grain size distribution in granular cu100 xcox through anhysteretic Magnetisation Curve analysis
Journal of Magnetism and Magnetic Materials, 1996Co-Authors: Paolo Maria Eugenio Icilio Allia, F. Ghigo, M. Knobel, P. Tiberto, F. VinaiAbstract:Abstract The Magnetisation of melt-spun, granular Cu 100− x Co x ( x = 5, 15) was measured at room temperature on as-cast and Joule-heated samples. The particle size distribution and the volume density of Co clusters were obtained by fitting the anhysteretic Magnetisation Curves with four Langevin functions, corresponding to Co particles of definite radii.
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Grain size distribution in granular Cu100−xCox through anhysteretic Magnetisation Curve analysis
Journal of Magnetism and Magnetic Materials, 1996Co-Authors: Paolo Maria Eugenio Icilio Allia, Paola Tiberto, F. Ghigo, M. Knobel, F. VinaiAbstract:Abstract The Magnetisation of melt-spun, granular Cu 100− x Co x ( x = 5, 15) was measured at room temperature on as-cast and Joule-heated samples. The particle size distribution and the volume density of Co clusters were obtained by fitting the anhysteretic Magnetisation Curves with four Langevin functions, corresponding to Co particles of definite radii.
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Grain size distribution in granular Cu100−Co through anhysteretic Magnetisation Curve analysis
Journal of Magnetism and Magnetic Materials, 1996Co-Authors: P. Allia, F. Ghigo, M. Knobel, P. Tiberto, F. VinaiAbstract:The Magnetisation of melt-spun, granular Cu100-xCox (x = 5, 15) was measured at room temperature on as-cast and Joule-heated samples. The particle size distribution and the volume density of Co clusters were obtained by fitting the anhysteretic Magnetisation Curves with four Langevin functions, corresponding to Co particles of definite radii
G. Turilli - One of the best experts on this subject based on the ideXlab platform.
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Magnetic correlation among nanosized Co particles in CuCo heterogeneous thin films
Journal of Magnetism and Magnetic Materials, 1999Co-Authors: Paolo Maria Eugenio Icilio Allia, Paola Tiberto, Franco Vinai, L. Pareti, G. TurilliAbstract:Room temperature measurements of Magnetisation and giant magnetoresistance were performed on heterogeneous CuCo thin films produced with different thickness by means of RF sputtering. Average particle size, particle size distribution, volume fraction of particles were obtained from Magnetisation Curve analysis. A correlation among moments was found in all examined systems, depending on film thickness.
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Magnetic correlation among nanosized Co particles in CuCo heterogeneous thin films
Journal of Magnetism and Magnetic Materials, 1999Co-Authors: Paolo Maria Eugenio Icilio Allia, Paola Tiberto, Franco Vinai, L. Pareti, G. TurilliAbstract:Room temperature measurements of Magnetisation and giant magnetoresistance were performed on heterogeneous CuCo thin films produced with different thickness by means of RF sputtering. Average particle size, particle size distribution, volume fraction of particles were obtained from Magnetisation Curve analysis. A correlation among moments was found in all examined systems, depending on him thickness. (C) 1999 Elsevier Science B.V. All rights reserved
Aimo Francesco - One of the best experts on this subject based on the ideXlab platform.
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New magnetic field induced quantum states : microscopic, Nuclear Magnetic Resonance study of azurite
2011Co-Authors: Aimo FrancescoAbstract:Nous présentons une étude par Résonance Magnétique Nucléaire (RMN) de l'azurite, Cu3(CO3)2(OH)2, un système de spins quantiques. Ce composé peut être modélisé comme une chaine quasi-unidimensionnelle, frustrée, ‘de type diamant', de spins électroniques S=1/2 portés par les ions de cuivre Cu2+. Il présente dans sa courbe de l'aimantation en fonction du champ magnétique, entre 11 et 30 T et à très basse température, un plateau à 1/3 de l'aimantation à saturation. Nous avons effectué des mesures RMN du cuivre dans l'azurite à T=1.5 K afin de déterminer sa structure magnétique microscopique. Les résultats obtenus dans le plateau démontrent que le ‘dimère' des deux spins qui sont plus fortement couplés est approximativement dans l'état singulet, tandis que le troisième spin (le ‘monomère') est presque complètement polarisé. Cela confirme que la configuration électronique du plateau à 1/3 est un nouvel état quantique qui n'a pas d'équivalent classique [F. Aimo et al., Phys. Rev. Lett. 102 127205, (2009)]. Par RMN du proton à très haut champ magnétique, entre 31 et 34 T à T=0.6 K, nous avons aussi étudié le passage depuis le plateau à 1/3 vers la polarisation complète du système, afin de confirmer ou infirmer l'existence éventuelle d'un plateau à 2/3. Ce plateau est attendu dans le cas exceptionnel où les corrélations longitudinales de spins sont dominantes et stabilisent un ordre incommensurable longitudinal. L'analyse détaillée du dédoublement très symétrique des spectres RMN nous amène à conclure que c'est un ordre antiferromagnétique transverse et non longitudinal qui est établi, ce qui est incompatible avec l'existence du plateau à 2/3.We present a Nuclear Magnetic Resonance (NMR) study of azurite, Cu3(CO3)2(OH)2, a quantum spin system. This compound has been recognised as a model system for a quasi-1D, frustrated, ‘diamond' chain of S=1/2 spins beared by Cu2+ ions. In the Magnetisation Curve as a function of magnetic field it presents, between 11 and 30 T and at very low temperatures, a plateau at 1/3 of the saturation Magnetisation. We performed Cu NMR measurements in azurite at T=1.5 K in order to determine its microscopic magnetic structure. The obtained results show that the ‘dimer' of two more strongly coupled spins is approximately in a singlet state while the third spin (the ‘monomer') is almost fully polarised. This confirms that the electronic configuration of the 1/3 plateau is a new quantum state without classical analogue [F. Aimo et al., Phys. Rev. Lett. 102, 127205, (2009)]. By very high magnetic field proton NMR, between 31 and 34 T and at T=0.6 K, we have also studied the transition region between the 1/3 plateau and the full polarisation of the system in order to test for the possible existence of a 2/3 plateau. This plateau is expected in rather exceptional case when longitudinal spin correlations are dominant and stabilise an incommensurable longitudinal order. However, our analysis showed that the symmetric splitting of NMR spectra corresponds to an antiferromagnetic transverse and not longitudinal order, which is incompatible with the existence of a 2/3 plateau
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Nouveaux états quantiques induits sous champ : étude microscopique par résonance magnétique nucléaire de l'azurite
HAL CCSD, 2011Co-Authors: Aimo FrancescoAbstract:We present a Nuclear Magnetic Resonance (NMR) study of azurite, Cu3(CO3)2(OH)2, a quantum spin system. This compound has been recognised as a model system for a quasi-1D, frustrated, ‘diamond' chain of S=1/2 spins beared by Cu2+ ions. In the Magnetisation Curve as a function of magnetic field it presents, between 11 and 30 T and at very low temperatures, a plateau at 1/3 of the saturation Magnetisation. We performed Cu NMR measurements in azurite at T=1.5 K in order to determine its microscopic magnetic structure. The obtained results show that the ‘dimer' of two more strongly coupled spins is approximately in a singlet state while the third spin (the ‘monomer') is almost fully polarised. This confirms that the electronic configuration of the 1/3 plateau is a new quantum state without classical analogue [F. Aimo et al., Phys. Rev. Lett. 102, 127205, (2009)]. By very high magnetic field proton NMR, between 31 and 34 T and at T=0.6 K, we have also studied the transition region between the 1/3 plateau and the full polarisation of the system in order to test for the possible existence of a 2/3 plateau. This plateau is expected in rather exceptional case when longitudinal spin correlations are dominant and stabilise an incommensurable longitudinal order. However, our analysis showed that the symmetric splitting of NMR spectra corresponds to an antiferromagnetic transverse and not longitudinal order, which is incompatible with the existence of a 2/3 plateau.Nous présentons une étude par Résonance Magnétique Nucléaire (RMN) de l'azurite, Cu3(CO3)2(OH)2, un système de spins quantiques. Ce composé peut être modélisé comme une chaine quasi-unidimensionnelle, frustrée, ‘de type diamant', de spins électroniques S=1/2 portés par les ions de cuivre Cu2+. Il présente dans sa courbe de l'aimantation en fonction du champ magnétique, entre 11 et 30 T et à très basse température, un plateau à 1/3 de l'aimantation à saturation. Nous avons effectué des mesures RMN du cuivre dans l'azurite à T=1.5 K afin de déterminer sa structure magnétique microscopique. Les résultats obtenus dans le plateau démontrent que le ‘dimère' des deux spins qui sont plus fortement couplés est approximativement dans l'état singulet, tandis que le troisième spin (le ‘monomère') est presque complètement polarisé. Cela confirme que la configuration électronique du plateau à 1/3 est un nouvel état quantique qui n'a pas d'équivalent classique [F. Aimo et al., Phys. Rev. Lett. 102 127205, (2009)]. Par RMN du proton à très haut champ magnétique, entre 31 et 34 T à T=0.6 K, nous avons aussi étudié le passage depuis le plateau à 1/3 vers la polarisation complète du système, afin de confirmer ou infirmer l'existence éventuelle d'un plateau à 2/3. Ce plateau est attendu dans le cas exceptionnel où les corrélations longitudinales de spins sont dominantes et stabilisent un ordre incommensurable longitudinal. L'analyse détaillée du dédoublement très symétrique des spectres RMN nous amène à conclure que c'est un ordre antiferromagnétique transverse et non longitudinal qui est établi, ce qui est incompatible avec l'existence du plateau à 2/3
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Nouveaux états quantiques induits sous champ (étude microscopique par résonance magnétique nucléaire de l'azurite)
2011Co-Authors: Aimo Francesco, Horvatic MladenAbstract:Nous présentons une étude par Résonance Magnétique Nucléaire (RMN) de l'azurite, Cu3(CO3)2(OH)2, un système de spins quantiques. Ce composé peut être modélisé comme une chaine quasi-unidimensionnelle, frustrée, de type diamant', de spins électroniques S=1/2 portés par les ions de cuivre Cu2+. Il présente dans sa courbe de l'aimantation en fonction du champ magnétique, entre 11 et 30 T et à très basse température, un plateau à 1/3 de l'aimantation à saturation. Nous avons effectué des mesures RMN du cuivre dans l'azurite à T=1.5 K afin de déterminer sa structure magnétique microscopique. Les résultats obtenus dans le plateau démontrent que le dimère' des deux spins qui sont plus fortement couplés est approximativement dans l'état singulet, tandis que le troisième spin (le monomère') est presque complètement polarisé. Cela confirme que la configuration électronique du plateau à 1/3 est un nouvel état quantique qui n'a pas d'équivalent classique [F. Aimo et al., Phys. Rev. Lett. 102 127205, (2009)]. Par RMN du proton à très haut champ magnétique, entre 31 et 34 T à T=0.6 K, nous avons aussi étudié le passage depuis le plateau à 1/3 vers la polarisation complète du système, afin de confirmer ou infirmer l'existence éventuelle d'un plateau à 2/3. Ce plateau est attendu dans le cas exceptionnel où les corrélations longitudinales de spins sont dominantes et stabilisent un ordre incommensurable longitudinal. L'analyse détaillée du dédoublement très symétrique des spectres RMN nous amène à conclure que c'est un ordre antiferromagnétique transverse et non longitudinal qui est établi, ce qui est incompatible avec l'existence du plateau à 2/3.We present a Nuclear Magnetic Resonance (NMR) study of azurite, Cu3(CO3)2(OH)2, a quantum spin system. This compound has been recognised as a model system for a quasi-1D, frustrated, diamond' chain of S=1/2 spins beared by Cu2+ ions. In the Magnetisation Curve as a function of magnetic field it presents, between 11 and 30 T and at very low temperatures, a plateau at 1/3 of the saturation Magnetisation. We performed Cu NMR measurements in azurite at T=1.5 K in order to determine its microscopic magnetic structure. The obtained results show that the dimer' of two more strongly coupled spins is approximately in a singlet state while the third spin (the monomer') is almost fully polarised. This confirms that the electronic configuration of the 1/3 plateau is a new quantum state without classical analogue [F. Aimo et al., Phys. Rev. Lett. 102, 127205, (2009)]. By very high magnetic field proton NMR, between 31 and 34 T and at T=0.6 K, we have also studied the transition region between the 1/3 plateau and the full polarisation of the system in order to test for the possible existence of a 2/3 plateau. This plateau is expected in rather exceptional case when longitudinal spin correlations are dominant and stabilise an incommensurable longitudinal order. However, our analysis showed that the symmetric splitting of NMR spectra corresponds to an antiferromagnetic transverse and not longitudinal order, which is incompatible with the existence of a 2/3 plateau.SAVOIE-SCD - Bib.électronique (730659901) / SudocGRENOBLE1/INP-Bib.électronique (384210012) / SudocGRENOBLE2/3-Bib.électronique (384219901) / SudocSudocFranceF
Paola Tiberto - One of the best experts on this subject based on the ideXlab platform.
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Magnetic correlation among nanosized Co particles in CuCo heterogeneous thin films
Journal of Magnetism and Magnetic Materials, 1999Co-Authors: Paolo Maria Eugenio Icilio Allia, Paola Tiberto, Franco Vinai, L. Pareti, G. TurilliAbstract:Room temperature measurements of Magnetisation and giant magnetoresistance were performed on heterogeneous CuCo thin films produced with different thickness by means of RF sputtering. Average particle size, particle size distribution, volume fraction of particles were obtained from Magnetisation Curve analysis. A correlation among moments was found in all examined systems, depending on film thickness.
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Magnetic correlation among nanosized Co particles in CuCo heterogeneous thin films
Journal of Magnetism and Magnetic Materials, 1999Co-Authors: Paolo Maria Eugenio Icilio Allia, Paola Tiberto, Franco Vinai, L. Pareti, G. TurilliAbstract:Room temperature measurements of Magnetisation and giant magnetoresistance were performed on heterogeneous CuCo thin films produced with different thickness by means of RF sputtering. Average particle size, particle size distribution, volume fraction of particles were obtained from Magnetisation Curve analysis. A correlation among moments was found in all examined systems, depending on him thickness. (C) 1999 Elsevier Science B.V. All rights reserved
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Grain size distribution in granular Cu100−xCox through anhysteretic Magnetisation Curve analysis
Journal of Magnetism and Magnetic Materials, 1996Co-Authors: Paolo Maria Eugenio Icilio Allia, Paola Tiberto, F. Ghigo, M. Knobel, F. VinaiAbstract:Abstract The Magnetisation of melt-spun, granular Cu 100− x Co x ( x = 5, 15) was measured at room temperature on as-cast and Joule-heated samples. The particle size distribution and the volume density of Co clusters were obtained by fitting the anhysteretic Magnetisation Curves with four Langevin functions, corresponding to Co particles of definite radii.