High-Speed, Low-Power and Mid-IR Silicon Photonics Applications
Dissertationsschrift
(Sprache: Englisch)
In this book, the first high-speed silicon-organic hybrid (SOH) is demonstrated by exploiting a highly-nonlinear polymer cladding and a silicon waveguide. By using a liquid crystal cladding instead, an ultra-low power phase shifter is obtained. A third type...
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Produktinformationen zu „High-Speed, Low-Power and Mid-IR Silicon Photonics Applications “
In this book, the first high-speed silicon-organic hybrid (SOH) is demonstrated by exploiting a highly-nonlinear polymer cladding and a silicon waveguide. By using a liquid crystal cladding instead, an ultra-low power phase shifter is obtained. A third type of device is proposed for achieving three-wave mixing on the silicon-organic hybrid (SOH) platform. Finally, new physical constants which describe the optical absorption in charge accumulation/inversion layers in silicon are determined.
Klappentext zu „High-Speed, Low-Power and Mid-IR Silicon Photonics Applications “
In this book, the first high-speed silicon-organic hybrid (SOH) is demonstrated by exploiting a highly-nonlinear polymer cladding and a silicon waveguide. By using a liquid crystal cladding instead, an ultra-low power phase shifter is obtained. A third type of device is proposed for achieving three-wave mixing on the silicon-organic hybrid (SOH) platform. Finally, new physical constants which describe the optical absorption in charge accumulation/inversion layers in silicon are determined.
Bibliographische Angaben
- Autor: Luca Alloatti
- 2013, X, 116 Seiten, mit Abbildungen, Maße: 14,8 x 21 cm, Kartoniert (TB), Englisch
- Verlag: KIT Scientific Publishing
- ISBN-10: 3731500566
- ISBN-13: 9783731500568
Sprache:
Englisch
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