鉴赏家 发表于 2025-3-25 06:18:10
Linear and Nonlinear Optical Properties of Polymer Waveguides,periods of reform that the institution reawakened to the meaning of its gnostic heritage; such a period was the twelfth century. The time was an exciting one for the number of intellectual currents that met there in conflux. One of the most forcible of these, and no small component of the whole inteethnology 发表于 2025-3-25 10:57:00
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Optical Losses Characterization of Channel Waveguides through a Photodeflection Method,d die Entwicklung zu beurteilen, um so die Wertigkeit der Community zu steigern. Die Entwicklung der Virtual Communities gilt es nicht nur aus betriebswirtschaftlicher Sicht, im Sinne eines möglichen Geschäftsmodells weiter zu verfolgen, sondern auch wegen ihrer zukünftigen marktlichen und gesellschaftlichen 978-3-8244-7747-0978-3-663-07760-2Employee 发表于 2025-3-25 23:09:06
Integrated Optics Applications for Telecommunications,tries and the key characteristics of today’s reuse projects..Based on market research in the ASIC field the business related to Virtual Components will be analyzed. The discussion of research activities in the reuse field covers research work already applied in real life projects, hot topics in reseinhibit 发表于 2025-3-26 03:13:43
Book 1994r optical materials, devices both in the linear and nonlinear regimes, and selected applications. These Proceedings update and augment the material contained in a previous ISQE volume, "Integrated Optics: Physics and Applications", S. Martellucci and A. N. Chester, Eds. , NATO ASI Series B, Vol. 91venous-leak 发表于 2025-3-26 07:38:25
, nonlinear optical materials, devices both in the linear and nonlinear regimes, and selected applications. These Proceedings update and augment the material contained in a previous ISQE volume, "Integrated Optics: Physics and Applications", S. Martellucci and A. N. Chester, Eds. , NATO ASI Series B, Vol. 91 978-1-4613-6096-4978-1-4615-2566-0未开化 发表于 2025-3-26 08:55:34
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,Fourier transforms on L1(-∞, ∞),otentially result in efficient ultrafast switching devices. The devices proposed use a pipeline processing architecture, where more than one optical pulse can be present in the device, though in a different time slot.