Cefe López mainly investigates Photonic crystal, Optics, Nanotechnology, Photonics and Optoelectronics. The Photonic metamaterial research Cefe López does as part of his general Photonic crystal study is frequently linked to other disciplines of science, such as SPHERES, therefore creating a link between diverse domains of science. Cefe López has researched Optics in several fields, including Spectral line and Electronic band structure.
His Nanotechnology research includes elements of Optical fiber and Microsphere. Cefe López interconnects Lattice, Diamond, Engineering physics and Data science in the investigation of issues within Photonics. His Optoelectronics study combines topics in areas such as OPALS, Inverse and Organic chemistry.
His primary scientific interests are in Optics, Photonic crystal, Optoelectronics, Photonics and Nanotechnology. His Optics research is multidisciplinary, incorporating elements of Spectral line and Dielectric. In general Photonic crystal study, his work on Yablonovite often relates to the realm of SPHERES, thereby connecting several areas of interest.
His research brings together the fields of Inverse and Optoelectronics. Cefe López does research in Photonics, focusing on Photonic metamaterial specifically. His work carried out in the field of Nanotechnology brings together such families of science as Porosity, OPALS, Colloidal crystal and Adsorption.
His primary areas of study are Nanotechnology, Laser, Photonics, Lasing threshold and Optics. His research in Nanotechnology intersects with topics in Porosity, Colloidal crystal, Structural coloration and Adsorption. His Laser research incorporates themes from Resonator, Photoluminescence and Doping.
His Photonics study is associated with Optoelectronics. His research in Optoelectronics focuses on subjects like Radiative transfer, which are connected to Silicon and Common emitter. His Optics study incorporates themes from Titanium dioxide and Shape-memory alloy.
Cefe López mainly focuses on Lasing threshold, Laser, Scattering, Optoelectronics and Nanotechnology. Laser is a subfield of Optics that Cefe López studies. He studies Optics, focusing on Coupled mode theory in particular.
The Scattering study combines topics in areas such as Condensed matter physics, Random laser and Fluence. His work in the fields of Wafer and Photonic crystal overlaps with other areas such as Radiative cooling. His research integrates issues of Octahedron, Colloidal crystal, Microscale chemistry, Moisture and Capillary action in his study of Nanotechnology.
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Large-scale synthesis of a silicon photonic crystal with a complete three-dimensional bandgap near 1.5 micrometres
Alvaro Blanco;Alvaro Blanco;Alvaro Blanco;Emmanuel Chomski;Serguei Grabtchak;Marta Ibisate;Marta Ibisate.
Nature (2000)
Materials Aspects of Photonic Crystals
Cefe Lopez.
Advanced Materials (2003)
Strong magnetic response of submicron Silicon particles in the infrared
A. García-Etxarri;R. Gómez-Medina;L. S. Froufe-Pérez;C. López.
Optics Express (2011)
Self-assembled photonic structures.
Juan F. Galisteo-López;Marta Ibisate;Riccardo Sapienza;Luis S. Froufe-Pérez.
Advanced Materials (2011)
3D long-range ordering in an SiO2 submicrometer-sphere sintered superstructure
Raul Mayoral;Joaquin Requena;José S. Moya;Cefe López.
Advanced Materials (1997)
Control of the Photonic Crystal Properties of fcc-Packed Submicrometer SiO2 Spheres by Sintering
Hernán Míguez;Francisco Meseguer;Cefe López;Álvaro Blanco.
Advanced Materials (1998)
Photonic crystal properties of packed submicrometric SiO2 spheres
H. Mı́guez;C. López;F. Meseguer;A. Blanco.
Applied Physics Letters (1997)
Evidence of FCC crystallization of SiO2 nanospheres
H. Miguez;F. Meseguer;C. Lopez;A. Mifsud.
Langmuir (1997)
Electrophoretic Deposition To Control Artificial Opal Growth
M. Holgado;F. Garcia-Santamaria;A. Blanco;M. Ibisate.
Langmuir (1999)
Refractive acoustic devices for airborne sound.
F. Cervera;L. Sanchis;J. V. Sánchez-Pérez;R. Martínez-Sala.
Physical Review Letters (2001)
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