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characterization of infrared absorbing and emitting III-V colloidal quantum dots. Optical characterization of the synthesized materials Upscaling synthesis reactions Optimization towards improved yield and size
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photonic architectures based on phase control, amplitude modulation, optical switching, and quantum light shaping. Design and characterize electro-optic and thermo-optic control schemes for programmable
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and Prof. Frank Koppens (ICFO). We are seeking a highly motivated and skilled Quantum Materials Research Scientist to join our cutting-edge project, focusing on the exploration and development
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switching, and quantum light shaping. Design and characterize electro-optic and thermo-optic control schemes for programmable photonic integrated circuits. Perform experimental testing and characterization
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Quantum NanoElectronics and NanoMechanics Group: Post-doctoral position in nanotube electromechanics
. The successful candidate will be joining the Quantum NanoElectronics and NanoMechanics group led by Prof. Dr. Adrian Bachtold. The successful candidate will supervise the effort on nanotube electromechanics. Share
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development of explainable and interpretable classical and quantum deep learning algorithms - Design and development of hackathons and other collaborative methodologies to promote the control of artificial
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quantum simulator. The goal is to construct a new experimental tool based on a graphene superlattice to not only measuring macroscopic observables, such as electrical resistivity and magnetization, but also
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. The successful candidate will be joining the Ultracold Quantum Gases group led by Prof. Dr.Leticia Tarruell . The Fermi-Hubbard model is a cornerstone model of condensed matter physics. It describes the physics