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Dive into the research topics where H.J. van Weerden is active.

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Featured researches published by H.J. van Weerden.


IEEE Journal of Quantum Electronics | 2000

Characteristics of Er-doped Al/sub 2/O/sub 3/ thin films deposited by reactive co-sputtering

S. Musa; H.J. van Weerden; T.H. Yau; Paul Lambeck

Er-doped Al/sub 2/O/sub 3/ thin films have been deposited by reactive co-sputtering onto thermally oxidized Si-wafers. The deposition process has been optimized with respect to the requirements originating from the application of these multilayer structures as integrated optical amplifiers for the third telecom window, i.e., the wavelength range 1.52-1.55 /spl mu/m. The films obtained at a substrate temperature of only 400/spl deg/C are amorphous and show a homogenous structure, without columns or grains. For slabguides, background losses smaller than 0.25 dB/cm have been obtained, even without any annealing. A relatively broad luminescence band, having an FWHM of /spl sim/55 nm around the 1.533-/spl mu/m wavelength, has been measured. From gain versus pumping power curves, an upconversion coefficient lower then 20/spl middot/10/sup -25/ m/sup 3//s has been derived, being half of the values reported up to now in the literature. Simulations based on experimentally determined material parameters and assuming a channel attenuation of 0.5 dB/cm indicate, for 0.24 at.% Er channel devices with an optimal channel length of 7.7 cm, an amplification of 8 dB at 1.533 /spl mu/m for a pump wavelength of 1.48 /spl mu/m, and a pump power of only 8.7 mW.


IEEE Photonics Technology Letters | 1994

Bent asymmetric Y-branch integrated optical broadband wavelength multi/demultiplexer

T.H. Hoekstra; H.J. van Weerden; Paul Lambeck; T.J.A. Popma

A new integrated optic wavelength multi/demultiplexer based on a bent asymmetric Y-branch is proposed and investigated. The broadband multi/demultiplexer is demonstrated to combine/split 660 nm pump light and 1535 nm signal light with coupling efficiencies of about 85% and 95% respectively, which is useful for erbium doped integrated optic lasers. The bent Y-branch multi/demultiplexer is simple to fabricate and rather insensitive to processing variations.<<ETX>>


lasers and electro optics society meeting | 1999

Characteristics of Er/sup 3+/:Al/sub 2/O/sub 3/ thin-films deposited by reactive co-sputtering for application in optical amplification

S. Musa; H.J. van Weerden; T.H. Yau; Paul Lambeck

Er/sup 3+/-doped Al/sub 2/O/sub 3/ films have been deposited by reactive co-sputtering onto thermally oxidized Si-wafers for use in optical amplification. Low background losses and broad emission band were measured. High concentration and gain can be achieved.


IEEE Journal of Quantum Electronics | 1999

Characteristics of Er3+:Al2O3 thin-films deposited by reactive co-sputtering for application in optical amplification

S. Musa; H.J. van Weerden; T.H. Yau; Paul Lambeck


IEEE Journal of Quantum Electronics | 2000

Characteristics of Er-doped Al2O3 thin films deposited by reactive Co-sputtering

S. Musa; H.J. van Weerden; T.H. Yau; Paul Lambeck


Theoretical Computer Science | 1999

Characteristics of Er3+:A1203 thin-films deposited by reactive co-sputtering for application in optical amplification

Shahrulniza Musa; H.J. van Weerden; T.H. Yau; Paul Lambeck


Archive | 1999

Er3+: Al2O3 films deposited by reactive co-sputtering for application in optical amplification

S.M. Abbas mohamed; H.J. van Weerden; T.H. Yau; Paul Lambeck


Archive | 1998

Design of Er:Y2O3 lasers and amplifiers

H.J. van Weerden; T. Bosma; Paul Lambeck; T.J.A. Popma


Archive | 1997

The violet, Blue and Green Up-conversion Fluorescence of Highly Er3+-doped Y2O3 Waveguides

Beukema; H.J. van Weerden; Paul Lambeck; J. Broeng; J.L. Philipsen; A. Bjarklev; J.E. Pedersen


ECIO'97 8th European Conference on Integrated Optics and Technical Exhibition | 1997

Low-treshold amplification at 1.5um in Er:Y2O3 IO-amplifiers

H.J. van Weerden; Hugo Hoekstra; Paul Lambeck; T.J.A. Popma

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T.H. Yau

University of Twente

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S. Musa

University of Twente

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Hugo Hoekstra

MESA+ Institute for Nanotechnology

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