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Transistors, waveguides, resonators and more

Transistors, waveguides, resonators and more RESEARCH HIGHLIGHTS Light at the end of the waveguide Transistors at the interface In optoelectronics, one Very-high-mobility the two-dimensional of the intentions is to electron gases can form electron gas that forms integrate electronic as well at the interface between at the interface between as optical components two perovskite-oxide a layer of LaAlO on a single chip. To guide insulators. This recent and a layer of SrTiO light beams across such surprising discovery has (Science doi:10.1126/ an integrated circuit triggered a considerable science.1131091). Based requires optical structures amount of research, on previous studies, they that can connect the two fuelled in part by the chose a structure with components. However, it ultimate goal of oxide- a thickness of LaAlO has proved difficult to find based electronics devices such that the interface interconnects of a suitable with performances was insulating. By size for connecting the small electronic components with the larger optical devices. comparable to or applying a gate voltage A concept for highly confined light transport is now demonstrated by Dionne, Lezec higher than present across the structure, they and Atwater (Nano Lett. doi:10.1021/nl0610477; 2006), who fabricated waveguides semiconductor ones. observed a transition composed of a dielectric core surrounded http://www.deepdyve.com/assets/images/DeepDyve-Logo-lg.png Nature Materials Springer Journals

Transistors, waveguides, resonators and more

Nature Materials , Volume 5 (10) – Oct 1, 2006

Transistors, waveguides, resonators and more

Abstract

RESEARCH HIGHLIGHTS Light at the end of the waveguide Transistors at the interface In optoelectronics, one Very-high-mobility the two-dimensional of the intentions is to electron gases can form electron gas that forms integrate electronic as well at the interface between at the interface between as optical components two perovskite-oxide a layer of LaAlO on a single chip. To guide insulators. This recent and a layer of SrTiO light beams across such surprising discovery has (Science...
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Publisher
Springer Journals
Copyright
Copyright © 2006 by Nature Publishing Group
Subject
Materials Science; Materials Science, general; Optical and Electronic Materials; Biomaterials; Nanotechnology; Condensed Matter Physics
ISSN
1476-1122
eISSN
1476-4660
DOI
10.1038/nmat1753
Publisher site
See Article on Publisher Site

Abstract

RESEARCH HIGHLIGHTS Light at the end of the waveguide Transistors at the interface In optoelectronics, one Very-high-mobility the two-dimensional of the intentions is to electron gases can form electron gas that forms integrate electronic as well at the interface between at the interface between as optical components two perovskite-oxide a layer of LaAlO on a single chip. To guide insulators. This recent and a layer of SrTiO light beams across such surprising discovery has (Science doi:10.1126/ an integrated circuit triggered a considerable science.1131091). Based requires optical structures amount of research, on previous studies, they that can connect the two fuelled in part by the chose a structure with components. However, it ultimate goal of oxide- a thickness of LaAlO has proved difficult to find based electronics devices such that the interface interconnects of a suitable with performances was insulating. By size for connecting the small electronic components with the larger optical devices. comparable to or applying a gate voltage A concept for highly confined light transport is now demonstrated by Dionne, Lezec higher than present across the structure, they and Atwater (Nano Lett. doi:10.1021/nl0610477; 2006), who fabricated waveguides semiconductor ones. observed a transition composed of a dielectric core surrounded

Journal

Nature MaterialsSpringer Journals

Published: Oct 1, 2006

There are no references for this article.