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Field
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, Chemistry, or a related field Strong background in OLEDs, organic electronics, optoelectronics, or photonics Hands-on experience with fabrication and characterization of thin-film optoelectronic devices
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states, or entangled photon sources. Familiarity with quantum-state tomography, entanglement witnesses, or other quantum-information metrics applied to matter or light. Experience with photoelectron
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an international collaboration involving several observatory and university partners worldwide. We aim to produce next generation astronomical instruments founded on photonics technologies. Our group is an
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paradigms, enabling the next major step-change in photovoltaic efficiency. New device architectures, concentrator PV, quantum cutting, hot-carrier collection and photon transport will be explored and enabled
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profile PhD in Physics, Materials Science, Electrical Engineering, Chemistry, or a related field Strong background in OLEDs, organic electronics, optoelectronics, or photonics Hands-on experience with
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of these interactions—is essential. One promising hybrid quantum system is cavity magnomechanics, where magnons serve as intermediaries between photons and phonons. Magnons are already used in classical applications
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ferroelectric memory, photonic integrated circuits and next-generation telecommunications. You'll work at the exciting intersection of experimental materials science and materials informatics, collaborating in
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to cutting-edge research using advanced experimental and analytical approaches, including two-photon imaging, optogenetics, in vivo electrophysiology, and behavioral neuroscience. This is an exciting
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(ODMR), pulsed microwave spin control, confocal microscopy, and single-photon detection. Experience with shallow NV ensembles, near-surface sensing, T1 relaxometry or dynamical-decoupling noise
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founded on photonics technologies. Our group is an established world leader in astrophotonics, having pioneered instruments for photonic interferometry, nulling, wavefront sensing and spectroscopy