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- MSCA Doctoral Network HINA - Hybrid INtegration of Alkaline niobate - tantalate films for advanced photonic and piezoelectric devices
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waveguides and optimise coupling and transitions. Incorporate epitaxial, process, thermal and manufacturing constraints into robust device designs. Translate concepts into layouts and test structures, then
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ferronematic materials through variational and asymptotic methods. The research has four objectives: 1) **Smectic thin films**: analysis of a free-boundary problem for epitaxial growth and of the nematic-smectic
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Application deadline: 01/12/2026 Research theme: Quantum communication, condensed matter, quantum optics How to apply: https://uom.link/pgr-apply-2425 This 3.5 year PhD project is fully funded
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National Aeronautics and Space Administration (NASA) | Pasadena, California | United States | 14 days ago
. Description: This postdoctoral position centers on the development of next-generation ultraviolet (UV) detector technologies, with a strong emphasis on molecular beam epitaxy (MBE) for advanced materials growth
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, catalysis and biology. We use molecular beam epitaxy (MBE) to synthesize atomically precise crystals, we integrate them with two-dimensional exfoliated materials, and we characterize them using transport and
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Helmholtz-Zentrum Dresden-Rossendorf - HZDR - Helmholtz Association | Dresden, Sachsen | Germany | 6 days ago
created by combining molecular beam epitaxy (MBE) with ion implantation, and comprehensively characterize their optical, spin, and photophysical properties through confocal spectroscopy, optically detected
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Qualifications We are looking for candidates with experience in several of the following areas: Ultra-high vacuum technology Crystal growth systems (MBE, epitaxy or related technologies) Process engineering
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MSCA Doctoral Network HINA - Hybrid INtegration of Alkaline niobate - tantalate films for advanced photonic and piezoelectric devices | Montpellier, Languedoc Roussillon | France | 4 days ago
(doctoral school UMLP) Montpellier, France, https://www.annealsys.com & www.ubfc.fr Supervisors: J. M. Decams, V. Astié, A. Bartasyte (UBFC) Objectives: (i) Preliminary transport tests of precursors selected
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lasers for integration with silicon and silicon-nitride photonic circuits. You will define the epitaxial layer structure and the optical, electrical and thermal design of the laser. You will optimise
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a leading role in driving InP-based photonic integration towards the next level. A key enabler for our work is our state-of-the-art Nanolab cleanroom facility (http://www.tue.nl/nanolab ), which hosts