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Documents dont l'auteur est "Honkanen, Seppo"

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Nombre de documents: 8

F

François, V., Najafi, S. I., Ohtsuki, T., Peygambarian, N., Honkanen, S., Lafrenière, S., & Andrews, M. P. Progress toward realization of rare-earth-doped glass integrated-optics lasers [Communication écrite]. Nanofabrication Technologies and Device Integration. Lien externe

G

Guangwen, Z., Honkanen, S., Najafi, S. I., Tervonen, A., & Katila, P. (1994). Ion-exchanged glass waveguide Mach-Zehnder interferometers for wavelength multi/demultiplexing and the effect of thermal post-annealing on spectral transmission. Pure and Applied Optics, 3(5), 907-913. Lien externe

H

Honkanen, S., Ohtsuki, T., Jiang, S., Najafi, S. I., & Peyghambarian, N. (février 1997). High Er concentration phosphate glasses for planar waveguide amplifiers [Communication écrite]. Rare-earth-doped devices. Conference, San Jose, CA, USA. Lien externe

N

Najafi, S. I., Honkanen, S., & Tervonen, A. (juillet 1994). Recent progress in glass integrated optical circuits [Communication écrite]. Integrated Optics and Microstructures II, San Diego, CA, USA. Lien externe

S

Saarinen, J., Huttunen, J., Honkanen, S., & Najafi, S. I. (1994). Double-ion-exchange process in glass for the fabrication of computer-generated waveguide holograms. Applied Optics, 33(16), 3353-3359. Lien externe

Z

Zhang, G.-W., Honkanen, S., Najafi, S. I., Tervonen, A., & Katila, P. Effect of thermal post-annealing on spectral transmission of 0.807/1.3 um, 1.48/1.55 um, and 1.3/1.55 um ion-exchanged Mach-Zehnder interferometer wavelength demultiplexers/multiplexers [Communication écrite]. Nanofabrication Technologies and Device Integration. Lien externe

Zhang, G.-W., Honkanen, S., Najafi, S. I., & Tervonen, A. Glass integrated optics circuit for 1.3/1.55 micrometer optical communication system [Communication écrite]. Nanofabrication Technologies and Device Integration. Lien externe

Zhang, G., Honkanen, S., Tervonen, A., Wu, C.-M., & Najafi, S. I. (1994). Glass integrated optics circuit for 1.48/1.55- and 1.30/1.55-&mu;m wavelength division multiplexing and 1/8 splitting. Applied Optics, 33(16), 3371-3374. Lien externe

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