T. García-Fernández
Universidad Autónoma de la Ciudad de México
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Publication
Featured researches published by T. García-Fernández.
Journal of Applied Physics | 2013
J.L. Sánchez Llamazares; H. Flores-Zúñiga; D. Ríos-Jara; C.F. Sánchez-Valdés; T. García-Fernández; C. A. Ross; C. García
Phase transitions and structural and magnetic properties of rapidly solidified Ni50Mn38Sn12 alloy ribbons have been studied. Ribbon samples crystallize as a single-phase, ten-layered modulated (10M) monoclinic martensite with a columnar-grain microstructure and a magnetic transition temperature of 308 K. By decreasing the temperature, martensite undergoes an intermartensitic phase transition around 195 K. Above room temperature, the high temperature martensite transforms into austenite. Below 100 K, magnetization hysteresis loops shift along the negative H-axis direction, confirming the occurrence of an exchange bias effect. On heating, the thermal dependence of the coercive field HC shows a continuous increase, reaching a maximum value of 1017 Oe around 50 K. Above this temperature, HC declines to zero around 195 K. But above this temperature, it increases again up to 20 Oe falling to zero close to 308 K. The coercivity values measured in both temperature intervals suggest a significant difference in the...
Laser Physics Letters | 2016
M.A. Valverde-Alva; T. García-Fernández; E. Esparza-Alegría; M. Villagrán-Muniz; C. Sánchez-Aké; R. Castañeda-Guzmán; M.B. de la Mora; C E Márquez-Herrera; J.L. Sánchez Llamazares
We studied the effect of the repetition rate of laser pulses (RRLP) in the range from 1–10 Hz in the production of silver nanoparticles (Ag-NPs) by laser ablation in ethanol. Laser pulses with a duration of 7 ns, a wavelength of 1064 nm and an energy of 60 mJ were used to ablate a 99.99% pure silver target immersed in 10 ml of ethanol. Transmittance analysis and atomic absorption spectroscopy were used to study the silver concentration in the colloidal solutions. The ablation process was studied by measuring the transmission of the laser pulses through the colloid. It is shown that for a fixed number of laser pulses (NLP) the ablation efficiency, in terms of the ablated silver mass per laser pulse, increases with the RRLP. This result contradicts what had previously been established in the literature.
Physica Status Solidi (a) | 2013
A. Quintana-Nedelcos; J.L. Sánchez Llamazares; D. Ríos-Jara; A. G. Lara-Rodríguez; T. García-Fernández
Applied Surface Science | 2015
M.A. Valverde-Alva; T. García-Fernández; M. Villagrán-Muniz; C. Sánchez-Aké; R. Castañeda-Guzmán; E. Esparza-Alegría; C.F. Sánchez-Valdés; J.L. Sánchez Llamazares; C.E. Márquez Herrera
Spectrochimica Acta Part B: Atomic Spectroscopy | 2010
C. Sánchez-Aké; D. Mustri-Trejo; T. García-Fernández; M. Villagrán-Muniz
Journal of Magnetism and Magnetic Materials | 2016
J.L. Sánchez Llamazares; A. Quintana-Nedelcos; D. Ríos-Jara; C.F. Sánchez-Valdés; T. García-Fernández; Carlos Garcia
Applied Surface Science | 2017
C. Sánchez-Aké; A. Canales-Ramos; T. García-Fernández; M. Villagrán-Muniz
Spectrochimica Acta Part B: Atomic Spectroscopy | 2018
C. Sánchez-Aké; T. García-Fernández; J.L. Benítez; M.B. de la Mora; M. Villagrán-Muniz
MRS Proceedings | 2012
F.M. Lino-Zapata; J.L. Sánchez Llamazares; D. Ríos-Jara; A. G. Lara-Rodríguez; T. García-Fernández
Applied Surface Science | 2017
C. Sánchez-Aké; A. Canales-Ramos; T. García-Fernández; M. Villagrán-Muniz
Collaboration
Dive into the T. García-Fernández's collaboration.
Instituto Potosino de Investigación Científica y Tecnológica
View shared research outputsInstituto Potosino de Investigación Científica y Tecnológica
View shared research outputsInstituto Potosino de Investigación Científica y Tecnológica
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