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Optical Components for Communications is an incomparable book that provides the reader with an understanding of a highly technical subject in a way that is both academically sound and easy to read. Readers with a fundamental understanding of physics from an undergraduate degree will find Dr. Lin's explanation of the principles of quantum physics and optics in this book easy to grasp. This book is...
In this work, we demonstrate both scalability down to decanometer and high anisotropy up to 90% in fabrication of Si nanostructure by reactive ion etching. Silicon nanorods with 20 nm diameter size are fabricated on single-crystalline silicon surface
A new way for light emission at 1530 nm is explored using mixtures of Er2O3, P2O5, Yb2 O3 nanoparticles and spin-on glass deposited on silicon wafers. This layer is very thin, but exhibits optical gain
Black-body radiation can be enhanced at a specific range by metallic nano-photonic boxes. The long-wavelength spectrum is suppressed and the enhanced peak intensity is over five times stronger than the background for all measured temperatures
We explore a new way for light emission around 1500 nm. The light-emitting layer composed of Er2O3 nanoparticles and spin-on glass is deposited on silicon wafers. We can improve the efficiency by codoping Yb2O3 nanoparticles
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