Amanote Research
Register
Sign In
Lifetime Recovery in Ultrahighly Titanium-Doped Silicon for the Implementation of an Intermediate Band Material
Applied Physics Letters
- United States
doi 10.1063/1.3077202
Full Text
Open PDF
Abstract
Available in
full text
Categories
Astronomy
Physics
Date
January 26, 2009
Authors
E. Antolín
A. Martí
J. Olea
D. Pastor
G. González-Díaz
I. Mártil
A. Luque
Publisher
AIP Publishing
Related search
Ion Implantation and Pulsed Laser Melting Processing for the Development of an Intermediate Band Material
Electrical Decoupling Effect on Intermediate Band Ti-Implanted Silicon Layers
Journal of Physics D: Applied Physics
Surfaces
Ultrasonics
Condensed Matter Physics
Acoustics
Optical
Magnetic Materials
Films
Coatings
Electronic
Titanium Nitride as Light Trapping Plasmonic Material in Silicon Solar Cell
Optical Materials
Organic Chemistry
Electronic Engineering
Spectroscopy
Theoretical Chemistry
Electronic
Molecular Physics,
Inorganic Chemistry
Optical
Electrical
Computer Science
Magnetic Materials
Physical
Optics
Atomic
Thermodynamics of Zinc Insertion in CuGaS2:Ti, Used as a Modulator Agent in an Intermediate-Band Photovoltaic Material
Computational and Theoretical Chemistry
Biochemistry
Theoretical Chemistry
Condensed Matter Physics
Physical
Ultrahighly Dispersed Titanium Oxide on Silica : Effect of Precursors on the Structure and Photocatalysis
Le Journal de Physique IV
Mechanics Considerations for Microporous Titanium as an Orthopedic Implant Material
Journal of Biomedical Materials Research
Biomedical Engineering
Biomaterials
Pressure Coefficients for Band Gaps in Silicon
Solid State Communications
Materials Chemistry
Chemistry
Condensed Matter Physics
Pressure Coefficients for Band Gaps in Silicon
Microelectronics Reliability
Surfaces
Electronic Engineering
Condensed Matter Physics
Electronic
Molecular Physics,
Nanoscience
Films
Optical
Electrical
Atomic
Magnetic Materials
Nanotechnology
Reliability
Safety
Coatings
Optics
Quality
Risk
Magnetoresistance of Doped Silicon
Physical Review B