882 resultados para Fe-doped
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Magnetic field dependencies of Hall coefficient and magnetoresistivity are investigated in classical and quantizing magnetic fields in p-Bi2Te3 crystals heavily doped with Sn grown by Czochralsky method. Magnetic field was parallel to the trigonal axis C3. Shubnikov-de Haas effect and quantum oscillations of the Hall coefficient were measured at temperatures 4.2 K and 11 K. On the basis of the magnetic field dependence of the Hall coefficient a method of estimation of the Hall factor and Hall mobility using the Drabble- Wolf six ellipsoid model is proposed. Shubnikov-de Haas effect and quantum oscillations of the Hall coefficient were observed at 4.2 K and 11 K. New evidence for the existence of the narrow band of Sn impurity states was shown. This band is partly filled by electrons and it is overlapping with the valence states of the light holes. Parameters of the impurity states, their energy ESn - 15 meV, band broadening ¿<< k0T and localization radius of the impuritystate R - 30 Å were obtained.
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Com objetivo de avaliar a interação P x Fe e seus efeitos no crescimento de mudas de macadâmia, foi conduzido um experimento na Universidade Federal de Viçosa, em solução nutritiva. Sete concentrações de P e de Fe foram combinadas de acordo com a matriz experimental Box-Berard aumentada (3), modificada, constituindo 14 tratamentos, em cinco repetições. Concentrações de Fe na solução nutritiva variando entre 0,136 e 0,289 mmol L-1 reduziram em até 33% os teores de P nas folhas inferiores de plantas de macadâmia. Os teores de P nas folhas, nos tratamentos com a menor concentração de P e com concentrações de Fe variando entre 0,015 e 0,289 mmol L-1, mantiveram-se superiores às adequadas. Em solução nutritiva, a concentração de P pode ser menor que 0,03 mmol L-1. Os teores de Fe nas folhas de macadâmia aumentaram com a elevação da concentração de Fe na solução nutritiva e não foram afetados pela concentração de P. No espaço experimental explorado a relação Fe (mg kg)-1 : P (g kg) -1 foi menor que 60, sugerindo que as folhas das plantas estariam com deficiência de Fe.
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The 2014 Santa Fe Bone Symposium provided a setting for the presentation and discussion of the clinical relevance of recent advances in the fields of osteoporosis and metabolic bone disease. The format included oral presentations of abstracts by endocrinology fellows, plenary lectures, panel discussions and breakout sessions, with ample opportunities for informal discussions before and after scheduled events. Topics addressed in these proceedings included a review of the important scientific publications in the past year, fracture prevention in patients with dysmobility and immobility, fracture liaison services for secondary fracture prevention, management of pre-menopausal osteoporosis, the role of bone microarchitecture in determining bone strength, measurement of microarchitecture in clinical practice and methods to improve the quality of bone density testing. This is a report of the proceedings of the 2014 Santa Fe Bone Symposium.
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Electrically driven Er3+ doped Si slot waveguides emitting at 1530 nm are demonstrated. Two different Er3+ doped active layers were fabricated in the slot region: a pure SiO2 and a Si-rich oxide. Pulsed polarization driving of the waveguides was used to characterize the time response of the electroluminescence (EL) and of the signal probe transmission in 1 mm long waveguides. Injected carrier absorption losses modulate the EL signal and, since the carrier lifetime is much smaller than that of Er3+ ions, a sharp EL peak was observed when the polarization was switched off. A time-resolved electrical pump & probe measurement in combination with lock-in amplifier techniques allowed to quantify the injected carrier absorption losses. We found an extinction ratio of 6 dB, passive propagation losses of about 4 dB/mm, and a spectral bandwidth > 25 nm at an effective d.c. power consumption of 120 μW. All these performances suggest the usage of these devices as electro-optical modulators.
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The electrical properties of heavily In‐doped polycrystalline CdS films have been studied as a function of the doping level. The films were prepared by vacuum coevaporation of CdS and In. Conductivity and Hall measurements were performed over the temperature range 77-400 K. The conductivity decreases weakly with the temperature and shows a tendency towards saturation at low temperatures. A simple relationship σ=σ0(1+βT2) is found in the low‐temperature range. The temperature dependence of the mobility is similar to that of the conductivity since the Hall coefficient is found to be a constant in the whole temperature range. We interpret the experimental results in terms of a modified version of grain‐boundary trapping Seto"s model, taking into account thermionic emission and tunneling of carriers through the potential barriers. The barriers are found to be high and narrow, and tunneling becomes the predominating transport mechanism.
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In this study, (011)-highly oriented Sr, Nb co-doped BiFeO3 (BFO) thin films were successfully grown on SrRuO3/Si substrates by rf-magnetron sputtering. The presence of parasite magnetic phases was ruled out based on the high resolution x-ray diffraction data. BFO films exhibited a columnar-like grain growth with rms surface roughness values of 5.3 nm and average grain sizes of 65-70 nm for samples with different thicknesses. Remanent polarization values (2Pr) of 54 lC cm 2 at room temperature were found for the BFO films with a ferroelectric behavior characteristic of an asymmetric device structure. Analysis of the leakage mechanisms for this structure in negative bias suggests Schottky injection and a dominant Poole-Frenkel trap-limited conduction at room temperature. Oxygen vacancies and Fe3þ/Fe2þ trap centers are consistent with the surface chemical bonding states analysis from x-ray photoelectron spectroscopy data. The (011)-BFO/ SrRuO3/Si film structure exhibits a strong magnetic interaction at the interface between the multiferroic film and the substrate layer where an enhanced ferromagnetic response at 5 K was observed. Zero-field cooled (ZFC) and field cooled (FC) magnetization curves of this film system revealed a possible spin glass behavior at spin freezing temperatures below 30 K depending on the BFO film thickness.
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We present tunneling experiments on Fe~001!/MgO~20 Å!/FeCo~001! single-crystal epitaxial junctions of high quality grown by sputtering and laser ablation. Tunnel magnetoresistance measurements give 60% at 30 K, to be compared with 13% obtained recently on ~001!-oriented Fe/amorphous-Al2O3 /FeCo tunnel junctions. This difference demonstrates that the spin polarization of tunneling electrons is not directly related to the density of states of the free metal surface Fe~001! in this case but depends on the actual electronic structure of the entire electrode/barrier system.
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Työssä on tutkittu kylmämuovattujen nelikulmaisten putkipalkkien K-liitosten mallinnusta epälineaarisella elementtimenetelmällä. Työn tärkeimpänä tavoitteena on ollut kehittää putkipalkin osien materiaalimalleja siten, että liitosten kestävyyttä voidaan tutkia laboratoriokokeiden ohella luotettavasti myös elementtimenetelmällä. Toisena tavoitteena on ollut tutkia, voidaanko putkipalkkien liitosten mitoitusohjeita turvallisesti soveltaa kylmämuovatuille putkipalkeille, joissa valmistusprosessi aiheuttaa muutoksia materiaaliominaisuuksiin, erityisesti muodonmuutoskykyyn. Työssä tehtyjen laboratoriokokeiden ja elementtianalyysien perusteella elementti-menetelmä on käyttökelpoinen työkalu putkipalkkiliitosten staattista kestävyyttä määritettäessä, kun materiaalimallit on määritetty oikein. Erityisesti liitoksen käyttö-rajatilan mukaisen kestävyyden laskennassa elementtimenetelmällä saadaan hyvin laboratoriokokeita vastaavia tuloksia. Tehdyt laboratoriokokeet osoittavat myös, että Eurocode 3:n mukaisia putkipalkkien liitosten mitoitusohjeita voi turvallisesti käyttää kylmämuovatuille putkipalkeille.
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Työssä kehitettiin päällystyskoneen runkojen FE-analysointia erityisesti vastelaskennan kannalta, joskin myös ominaistaajuuslaskennan tarkentamiseksi esitettiin parannuksia. Työssä rajoitutaan harmonisten telaherätteiden aiheuttamien vasteiden analysointiin. . Työssä käsitellään värähtelyjen teoriaa ja tarkastellaan Abaqus-ohjelmiston (versio 5.8) laskentamenetelmiä vakiotilan värähtelyvasteen laskemiseksi. FEM-mallin rakenteeseen liittyen käsitellään perustuksien ja maaperän, konepalkin ja telaherätteiden mallintamista ja mallinnuksen laajuutta. Telaherätteitä käsitellään yksittäisen telan ja telojen samanvaiheisuuden kannalta. Samanvaiheisuutta tutkitaan työssä kehitetyllä summafunktiolla. Värähtelyjen mittaukseen FEM-mallien verifioimiseksi esitetään parannuksia. Nykyinen mallinnustapa käsitellään lyhyesti. Parannusehdotuksia kokeiltiin mallintamalla Rauma 400-päällystyskone ja vertaamalla tuloksia mitattuihin. Laskennan tulokset vastasivat vaihtelevasti mittaustuloksia, mittaustulosten puutteellisuus vaikeutti vertailua. Tulosten perusteella herätetiedon parantaminen on perusteltua ja mallin laajennus lisää todenmukaisuutta. Maaperän huomiointi vaikuttaa ennen kaikkea ominaistaajuuksiin ja muotoihin ja suora ratkaisutapa on käyttökelpoinen vasteen laskentamenetelmä otettaessa maaperä huomioon.
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In this paper, the influence of the deposition conditions on the performance of p-i-n microcrystalline silicon solar cells completely deposited by hot-wire chemical vapor deposition is studied. With this aim, the role of the doping concentration, the substrate temperature of the p-type layer and of amorphous silicon buffer layers between the p/i and i/n microcrystalline layers is investigated. Best results are found when the p-type layer is deposited at a substrate temperature of 125 °C. The dependence seen of the cell performance on the thickness of the i layer evidenced that the efficiency of our devices is still limited by the recombination within this layer, which is probably due to the charge of donor centers most likely related to oxygen.
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A Cu/Fe granular film, formed from a multilayer film and composed of particles of Fe imbedded in Cu, has had several of its important properties investigated. Measurements include ferromagentic resonance, magnetoresistance, Mössbauer effect, magnetic viscosity, and magnetization. The two‐phase behavior of these immiscible alloy systems, and the effect of multilayering on the shape of the magnetic precipitates, can explain some of these properties. An explanation of the ferromagnetic resonance line shape is proffered. An extraordinary macroscopic quantum tunneling effect is found to govern the magnetic relaxation at the lowest temperatures.
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The effects of the addition of heated oils to feeds (3%, w/w) and the dietary supplementation with a-tocopheryl acetate (TA; 100 mg/kg) and Zn (200 mg/kg) on rabbit tissue fatty acid (FA) composition and on the Zn, Cu, Fe and Se content in meat were assessed. Heating unrefined sunflower oil (SO) at 558C for 245 h increased its content in primary oxidation products and reduced its a-tocopherol content. However, this did not significantly affect tissue FA composition. Heating SO at 1408C for 31 h increased its content in secondary oxidation products and in some FA isomers asc9,t11-CLA and di-trans CLA. This led to increases in di-trans CLA in liver and in t9,c12-18:2 in meat. The c9,t11-CLA was the most incorporated CLA isomer in tissues. The dietary supplementation with a-TA did not affect the FA composition of plasma, liver or meat. The cooking of vacuum-packed rabbit meat at 788C for 5 min reduced significantly but slightly its polyunsaturated FA content. The dietary supplementation with Zn did not modify the content of Zn, Fe or Se in meat, but it reduced its Cu content. On the other hand, it increased the content of some FAs in meat when SO heated at 1408C for 31 h was added to feeds.
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Introduction La stratégie de reperfusion coronarienne par voie percutanée (PCI: percutaneous coronary intervention) est considérée comme étant la méthode de choix dans la prise en charge urgente des STEMI(H). Actuellement, les deux accès artériels principaux pour les PCI sont l'artère fémorale et l'artère radiale. La voie radiale est préconisée en première intention par les guidelines actuelles car elle serait associée à moins de complications hémorragiques. Objectif L'objectif de cette étude était de comparer la voie d'abord radiale à la voie fémorale, chez les patients admis pour un STEMI, en analysant le succès de la procédure de revascularisation, l'évolution clinique et les complications. Méthode Il s'agit d'une étude observationnelle, comprenant 268 patients admis au CHUV entre le 1er janvier et le 31 décembre 2013, avec le diagnostic de STEMI. Le choix de la voie d'accès artériel (fémorale ou radiale) était laissé au cardiologue interventionnel, sans randomisation. Les patients ont été séparés en 2 groupes, selon la voie d'abord vasculaire choisie au début de la procédure de revascularisation (intention to treat). Les endpoints primaires étaient les saignements majeurs (≥ 3 selon BARC)(A), et le door to balloon time(B). Les endpoints secondaires étaient les MACE(C), les saignements mineurs(A), le taux succès des procédures(D), le temps de fluoroscopie, la quantité de produit de contraste, et le taux de crossover(E) Résultats 268 patients en STEMI ont été inclus dans cette étude, pour un geste de revascularisation en urgence. La moyenne d'âge était de 64.3 ans, avec 73.1% d'hommes. 3 cas de saignements majeurs(A) ont lieu avec la voie radiale (3.4%), et 10 avec la voie fémorale (5.6%), p=0.44. Le door to balloon time ne diffère pas de manière significative selon la voie d'accès employée : 42 min (34-57) pour le groupe radial, et 48 min (31-61) pour le groupe fémoral, p=0.09. Les taux de MACE étaient de 8.0% avec la voie radiale, et de 6.7% avec la voie fémorale, p=0.7. Le taux de crossover était de 4.5% avec la voie radiale, et 0.6% avec la voie fémorale, p=0.02. Le temps de fluoroscopie était de 7min 28sec (5min 9 sec - 12min 25) pour la voie fémorale, contre 12min 22sec (9min 30 sec - 16min 19sec) pour la voie radiale, p < 0.05. La quantité de produit de contraste nécessaire était de 120 ml (100-160) pour le groupe fémoral, et de 170 ml (140-210) pour le groupe radial, p < 0.05. Le taux de succès était comparable entres les 2 groupes : 97.7% pour le groupe radial et 96.0% pour le groupe fémoral, p=0.47. 5.7% des patients du groupe radial sont décédés, contre 5.7% du groupe fémoral, p=0.97. Conclusion Notre étude démontre que la prise en charge d'un STEMI par voie radiale est possible, puisqu'elle n'allonge pas le « door to balloon time », qu'elle n'augmente pas le taux de MACE ni les saignements majeurs, que soit au point de ponction ou non. Par contre la voie radiale augmente la quantité de produit de contraste nécessaire, et allonge le temps de fluoroscopie de manière non négligeable. De futures études permettront peut-être de mieux définir les groupes de patients qui pourraient bénéficier le plus d'une approche radiale.