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Jared F. Bauters

Researcher at University of California, Santa Barbara

Publications -  43
Citations -  2879

Jared F. Bauters is an academic researcher from University of California, Santa Barbara. The author has contributed to research in topics: Waveguide & Silicon photonics. The author has an hindex of 20, co-authored 42 publications receiving 2496 citations. Previous affiliations of Jared F. Bauters include University of California & Juniper Networks.

Papers
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Passive technologies for future large-scale photonic integrated circuits on silicon: polarization handling, light non-reciprocity and loss reduction

TL;DR: Dai et al. as mentioned in this paper presented a novel concept for realizing a polarization splitter-rotator with a very simple fabrication process, which could allow large-scale photonic integrated circuits to be built on silicon substrates.
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Hybrid Silicon Photonic Integrated Circuit Technology

TL;DR: In this paper, the current status of the hybrid silicon photonic integration platform with emphasis on its prospects for increased integration complexity is reviewed, and it is shown that this platform is well positioned and holds great potential to address future needs for medium-scale photonic integrated circuits.
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Ultra-low-loss high-aspect-ratio Si3N4 waveguides.

TL;DR: An approach to make ultra-low-loss waveguides using stable and reproducible stoichiometric Si3N4 deposited with low-pressure chemical vapor deposition is characterized, projecting that 0.1 dB/m total propagation loss is achievable at a 7 mm bend radius with this approach.
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Planar waveguides with less than 0.1 dB/m propagation loss fabricated with wafer bonding.

TL;DR: A wafer-bonded silica-on-silicon planar waveguide platform with record low total propagation loss is demonstrated and the group index, fiber-to-chip coupling loss, critical bend radius, and propagation loss of these waveguides are characterized.
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Ultra-high quality factor planar Si 3 N 4 ring resonators on Si substrates

TL;DR: These are the highest Qs reported for ring resonator with planar directional couplers, and ultra-narrowband microwave photonic filters can be realized based on these high-Q ring resonators.