Zobrazeno 1 - 10
of 12
pro vyhledávání: '"Marcela M. Méndez Otero"'
Autor:
Marcela M. Méndez Otero, Maximino L. Arroyo Carrasco, Yasmi Reyes-Ortega, Sylvain Bernès, José Luis Alcántara-Flores, Ma. Guadalupe Quintero-Téllez
Publikováno v:
Inorganic Chemistry Communications. 70:41-46
In this work, we explore the synthesis, spectroscopic and structural characterization of a robust neutral homodinuclear Co(III) complex, namely bis[N,N′-3-azapentane-1,5-diyl-bis(salicylideneiminato)]-dicobalt(III), which was crystallized as a dime
Autor:
Luis Manuel Arévalo Aguilar, Alma Elena Piceno Martínez, Marcela M. Méndez Otero, Julio Abraham Mendoza Fierro, Ernesto Benítez Rodríguez
Publikováno v:
Entropy; Volume 20; Issue 4; Pages: 299
Entropy, Vol 20, Iss 4, p 299 (2018)
Entropy
Entropy, Vol 20, Iss 4, p 299 (2018)
Entropy
The Stern–Gerlach experiment (SGE) is one of the foundational experiments in quantum physics. It has been used in both the teaching and the development of quantum mechanics. However, for various reasons, some of its quantum features and implication
Autor:
Marcelo David Iturbe Castillo, Marcela M. Méndez Otero, Maximino L. Arroyo Carrasco, Roman Torres-Romero, Edmundo Reynoso Lara
Publikováno v:
Latin America Optics and Photonics Conference.
The normalized transmittance of the z-scan technique is obtained analytically for thick nonlinear media with a particular nonlocal response.
Autor:
Maximino L. Arroyo Carrasco, Beatriz A. Martínez Irivas, Marcelo David Iturbe Castillo, Ruben Ramos Garcia, Marcela M. Méndez Otero
Publikováno v:
Frontiers in Optics 2015.
In this work we propose a model that allows to calculate the z-scan curves by a thin nonlocal media that exhibit more than one nonlinear response, both refractive and absorptive, with same or different nonlocality.
Autor:
Sabino Chávez-Cerda, Marcelo David Iturbe Castillo, Maximino L. Arroyo Carrasco, Marcela M. Méndez Otero, Job Mendoza Hernandez
Publikováno v:
Scopus-Elsevier
The dynamics of the self-healing of beams with rotating wave front is demonstrated experimentally and explained theoretically. Partially obstructed high order Bessel beams present the same dynamics than partially obstructed parabolic beams
Autor:
Marcela M. Méndez Otero, M. D. Iturbe-Castillo, Israel Severiano Carrillo, Maximino L. Arroyo Carrasco
Publikováno v:
Frontiers in Optics 2013.
A thin media with local and nonlocal nonlinear response acting simultaneously is characterized through the z-scan technique. Differences in the z-scan curve according to the type of nonlocality are obtained
Autor:
Daysi Ramírez Martínez, Maximino L. Arroyo Carrasco, Marcela M. Méndez Otero, M. D. Iturbe-Castillo
Publikováno v:
Advanced Photonics Congress.
We study numerically the asymmetric collision of spatial solitons and their waveguide properties. We demonstrated that the amount of energy confined by each waveguide is function of the initial angle and separation between the solitons
Autor:
Marcela M. Méndez Otero, Edmundo Reynoso Lara, Emma V. Ramirez Garcia, Sabino Chavez Cerda, M. D. Iturbe-Castillo, Maximino L. Arroyo Carrasco
Publikováno v:
Advanced Photonics Congress.
A model to describe both nonlinear refractive and absorptive response of a thin nonlocal media is proposed. The model is used to obtain the far field intensity of the close or open aperture z-scan technique
Autor:
Marcela M. Méndez Otero, Maximino L. Arroyo Carrasco, Marcelo D. Iturbe Castillo, Gregorio C. Martínez Jiménez, Fernando Rodríguez García, Niklaus Ursus Wetter, Jaime Frejlich
Publikováno v:
AIP Conference Proceedings.
Z‐scan technique is a simple and widely used experimental method to measure the nonlinear refractive index of optical materials. Typically a longitudinal scan of the sample to test around the waist of a Gaussian beam is performed and the transmitte
Autor:
René O. Hernández Sánchez, Alma Arroyo Vélez, Erwin Martí Panameño, Maximino L. Arroyo Carrasco, Marcela M. Méndez Otero
Publikováno v:
Frontiers in Optics.
We measure the coherence length of a Super Luminescent Diode with three different methods; its spectral profile, the visibility of an interference pattern and the photo-EMF effect. These permit us to compare the three techniques.