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Study on the Glass-based Cu Ion Waveguides Made by Ion Exchange Technology
Author: GuJinHui
Tutor: HaoYinLei
School: Zhejiang University
Course: Microelectronics and Solid State Electronics
Keywords: Ion exchange Glass Optical waveguide Blue and green light-emitting
CLC: TN252
Type: Master's thesis
Year: 2011
Downloads: 32
Quote: 0
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Abstract
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Using ion exchange technology to prepare a glass optical waveguide device has a low production cost , low transmission loss , easy doping a high concentration of rare earth ions, and a better match with the refractive index of fiber , environmental stability , and easy to integrate the system medium the advantages , ideally suited for high-volume , low-cost integrated optical device fabrication . The traditional Ag / Na ion exchange technology has been one of the most extensive study , the use of this technology to produce a glass substrate optical passive devices (such as optical splitters ) has been successfully used in the optical communication system . Cu / Na ion exchange glass waveguide having the light emission characteristics of the blue-green band (cu) and a good third - order nonlinear effect (Cu clusters) with the potential of the active and passive waveguide device integrated to be considered will has a good prospect in the field of optical switches , optical information processing , in recent years has been a widespread concern . This thesis is based on the ion exchange technology advantages , combined with the specific characteristics of the Cu / Na and Ag / Na ion exchange , its goal is to : doped glass -based optical waveguide devices , blue and green light-emitting functional integration through regional , specifically through the glass substrate the on-chip Cu -doped Ag / Na ion exchange optical waveguide chip . This article innovative work is mainly focused on the following aspects : 1 . Theoretically doped Cu regional Ag / Na ion exchange technology glass based devices , blue and green light-emitting function integrated experimental program . Departure from the ion-exchange principles and theoretical models and feasibility analysis , this paper, the experimental program for a specific process . And the technical solution adopted in this paper for the glass-based optical waveguide devices to achieve functional integration provides a new way of thinking , to have a certain referential significance for the integration of other functions , such as the non-linear characteristics , magneto-optical characteristics . Experiment , groping through the device design and process , prepared in the silicate glass material with blue and green light - emitting properties of Cu-doped and Ag waveguides composite optical waveguide of blue and green light-emitting function . 3 . Measured using a variety of testing means the production of blue-green light-emitting functional optical waveguide , the light through the test , emission spectroscopy and electron probe microanalysis , and test results are analyzed and discussed .
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CLC: > Industrial Technology > Radio electronics, telecommunications technology > Photonics technology,laser technology > Optical waveguide and integrated optics > Waveguide
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