Kristinn B. Gylfason
Royal Institute of Technology
Network
Latest external collaboration on country level. Dive into details by clicking on the dots.
Publication
Featured researches published by Kristinn B. Gylfason.
Optics Letters | 2007
Carlos Angulo Barrios; Kristinn B. Gylfason; Benito Sanchez; Amadeu Griol; Hans Sohlström; M. Holgado; R. Casquel
We report an experimental demonstration of an integrated biochemical sensor based on a slot-waveguide microring resonator. The microresonator is fabricated on a Si3N4-SiO2 platform and operates at a wavelength of 1.3 microm. The transmission spectrum of the sensor is measured with different ambient refractive indices ranging from n=1.33 to 1.42. A linear shift of the resonant wavelength with increasing ambient refractive index of 212 nm/refractive index units (RIU) is observed. The sensor detects a minimal refractive index variation of 2x10(-4) RIU.
Optics Letters | 2008
Carlos Angulo Barrios; María-José Bañuls; Victoria González-Pedro; Kristinn B. Gylfason; Benito Sanchez; Amadeu Griol; Ángel Maquieira; Hans Sohlström; Miguel Holgado; Rafael Casquel
We demonstrate label-free molecule detection by using an integrated biosensor based on a Si(3)N(4)/SiO(2) slot-waveguide microring resonator. Bovine serum albumin (BSA) and anti-BSA molecular binding events on the sensor surface are monitored through the measurement of resonant wavelength shifts with varying biomolecule concentrations. The biosensor exhibited sensitivities of 1.8 and 3.2 nm/(ng/mm(2)) for the detection of anti-BSA and BSA, respectively. The estimated detection limits are 28 and 16 pg/mm(2) for anti-BSA and BSA, respectively, limited by wavelength resolution.
Optics Express | 2011
Mikael Antelius; Kristinn B. Gylfason; Hans Sohlström
We present the design, fabrication, and characterization of a grating for coupling between a single mode silica fiber and the TE mode in a silicon photonic waveguide on a silicon on insulator (SOI) substrate. The grating is etched completely through the silicon device layer, thus permitting the fabrication of through-etched surface coupled silicon nanophotonic circuits in a single lithography step. Furthermore, the grating is apodized to match the diffracted wave to the mode profile of the fiber. We experimentally demonstrate a coupling efficiency of 35% with a 1 dB bandwidth of 47 nm at 1536 nm on a standard SOI substrate. Furthermore, we show by simulation that with an optimized buried oxide thickness, a coupling efficiency of 72% and a 1 dB bandwidth of 38 nm at 1550 nm is achievable. This is, to our knowledge, the highest simulated coupling efficiency for single-etch TE-mode grating couplers. In particular, simulations show that apodizing a conventional periodic through-etched grating decreases the back-reflection into the waveguide from 21% to 0.1%.
Optics Express | 2010
Kristinn B. Gylfason; Carl Fredrik Carlborg; Andrzej Kazmierczak; Fabian Dortu; Hans Sohlström; Laurent Vivien; Carlos Angulo Barrios; Wouter van der Wijngaart; Göran Stemme
We present an experimental study of an integrated slot-waveguide refractive index sensor array fabricated in silicon nitride on silica. We study the temperature dependence of the slot-waveguide ring resonator sensors and find that they show a low temperature dependence of -16.6 pm/K, while at the same time a large refractive index sensitivity of 240 nm per refractive index unit. Furthermore, by using on-chip temperature referencing, a differential temperature sensitivity of only 0.3 pm/K is obtained, without individual sensor calibration. This low value indicates good sensor-to-sensor repeatability, thus enabling use in highly parallel chemical assays. We demonstrate refractive index measurements during temperature drift and show a detection limit of 8.8 x 10-6 refractive index units in a 7 K temperature operating window, without external temperature control. Finally, we suggest the possibility of athermal slot-waveguide sensor design.
Optics Express | 2007
Carlos Angulo Barrios; Benito Sanchez; Kristinn B. Gylfason; Amadeu Griol; Hans Sohlström; M. Holgado; R. Casquel
We report on the first demonstration of guiding light in vertical slot-waveguides on silicon nitride/silicon oxide material system. Integrated ring resonators and Fabry-Perot cavities have been fabricated and characterized in order to determine optical features of the slot-waveguides. Group index behavior evidences guiding and confinement in the low-index slot region at O-band (1260-1370nm) telecommunication wavelengths. Propagation losses of <20 dB/cm have been measured for the transverse-electric mode of the slot-waveguides.
Optics Express | 2008
Guillaume Maire; Laurent Vivien; Guillaume Sattler; Andrzej Kazmierczak; Benito Sanchez; Kristinn B. Gylfason; Amadeu Griol; Delphine Marris-Morini; Eric Cassan; Domenico Giannone; Hans Sohlström; Daniel Hill
High efficiency surface grating couplers for silicon nitride waveguides have been designed, fabricated, and characterized. Coupling efficiencies exceeding 60 % are reported at a wavelength of 1.31 mum, as well as angular and wavelength -3 dB tolerances of 4 degrees and 50 nm, respectively. When the wavelength is increased from 1310 nm to 1450 nm the coupling efficiency progressively decreases but remains above 20 % at 1450 nm. The influence of the duty ratio of the grating has also been investigated: maximum coupling efficiency was obtained at 50 % duty ratio.
Optics Express | 2008
Laurent Vivien; Delphine Marris-Morini; Amadeu Griol; Kristinn B. Gylfason; Daniel Hill; Jesús Álvarez; Hans Sohlström; Juan Hurtado; David Bouville; Eric Cassan
This article describes the first demonstration of ring resonators based on vertical multiple-slot silicon nitride waveguides. The design, fabrication and measurement of multiple-slot waveguide ring resonators with several coupling distances and ring radii (70 microm, 90 microm and 110 microm) have been carried out for TE and TM polarizations at the wavelength of 1.3 microm. Quality factors of 6,100 and 16,000 have been achieved for TE and TM polarization, respectively.
Journal of Micromechanics and Microengineering | 2013
Farizah Saharil; Fredrik Forsberg; Yitong Liu; Paolo Bettotti; Neeraj Kumar; Frank Niklaus; Tommy Haraldsson; Wouter van der Wijngaart; Kristinn B. Gylfason
We present two transfer bonding schemes for incorporating fragile nanoporous inorganic membranes into microdevices. Such membranes are finding increasing use in microfluidics, due to their precisel ...
Journal of Physics D | 2005
Kristinn B. Gylfason; Jones Alami; Ulf Helmersson; Jon Tomas Gudmundsson
We report on the creation and propagation of ion-acoustic solitary waves in a high power pulsed magnetron sputtering discharge. A dense localized plasma is created by applying high energy pulses (4–12 J) of length ≈70 µs, at a repetition frequency of 50 pulses per second, to a planar magnetron sputtering source. The temporal behaviour of the electron density, measured by a Langmuir probe, shows solitary waves travelling away from the magnetron target. The velocity of the waves depends on the gas pressure but is roughly independent of the pulse energy.
Review of Scientific Instruments | 2007
Unnar B. Arnalds; J. S. Agustsson; Arni Sigurdur Ingason; A. K. Eriksson; Kristinn B. Gylfason; Jon Tomas Gudmundsson; S. Olafsson
We describe a versatile three gun magnetron sputtering system with a custom made sample holder for in situ electrical resistance measurements, both during film growth and ambient changes on film electrical properties. The sample holder allows for the preparation of patterned thin film structures, using up to five different shadow masks without breaking vacuum. We show how the system is used to monitor the electrical resistance of thin metallic films during growth and to study the thermodynamics of hydrogen uptake in metallic thin films. Furthermore, we demonstrate the growth of thin film capacitors, where patterned films are created using shadow masks.