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Specific Process Knowledge/Thin film deposition/Deposition of Silicon Nitride/Deposition of Silicon Nitride using PECVD: Difference between revisions

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<nowiki>*</nowiki> Due to recent oscillations on the QC nitride recipe (HF), new tests were performed. Learn more about it under [[Deposition of SiN with PECVD4/NEW TESTS QC|NEW TESTS QC]] . (Still under construction)
<nowiki>*</nowiki> Due to recent oscillations on the QC nitride recipe (HF), new tests were performed. Learn more about it under [[Deposition of SiN with PECVD4/NEW TESTS QC|NEW TESTS QC]] . (Still under development.)




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==Recipes on PECVD3 for deposition of silicon nitride and silicon oxynitride==
==Recipes on PECVD3 for deposition of silicon nitride==


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==Recipes on PECVD2 for Deposition of Silicon Nitride and Silicon Oxynitride ==
==Recipes on PECVD2 for Deposition of Silicon Nitride==
'''<span style="color:Red">Expired Recipes! The PECVD2 has been decomissioned and is no longer available.</span>'''
'''<span style="color:Red">Expired Recipes! The PECVD2 has been decomissioned and is no longer available.</span>'''
===Recipes===
===Recipes===
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==Recipes on PECVD1 for Deposition of Silicon Nitride and Silicon Oxynitride==
==Recipes on PECVD1 for Deposition of Silicon Nitride==
'''<span style="color:Red">Expired Recipes! The PECVD1 has been decomissioned and is no longer available.</span>'''
'''<span style="color:Red">Expired Recipes! The PECVD1 has been decomissioned and is no longer available.</span>'''
===Recipes===
===Recipes===
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=Oxynitrides=
The recipe for making oxynitrides will depend on what kind of oxynitride you need. If you need a little higher refractive index than SiO2 then start with an SiO2 recipe and then add NH3 until the right refractive index is obtained. If you need very high refractive index a little lower than for silicon nitride then it is probably better to start with a silicon nitride recipe and add a some N2O until you get the right refractive index.
We had a Ph.d student long time ago Klaus Bo Mogensen that did the first. You can find his ph.d. thesis here: [https://findit.dtu.dk/en/catalog?author=Mogensen&q=title%3A%28Integration+of+Planar+Waveguides+for+Optical+Detection+in+Microfabricated+Analytical+Devices%29 Integration of Planar Waveguides for Optical Detection in Microfabricated Analytical Devices]
Berit H. has the thesis in her office.