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testbed for new ideas, we use nonlinear nanophotonic resonators. We are driven by fundamental physics questions relevant to improve the energy efficiency, speed, and precision of optical technologies
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geometry, making full use of physics-based insight, such as the resonant mode structure of the nominal geometry. In this project you will perform measurements and computational reconstruction hand in hand
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interactions. As a testbed for new ideas, we use optical microcavities with nonlinear materials inside. We are driven by fundamental physics questions relevant to improve the energy efficiency, speed, and
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. We strongly encourage anyone with the right qualifications to apply for the vacancy, regardless of age, gender, origin, sexual orientation or physical ability. AMOLF has won the NNV Diversity Award
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for new physics emerging from photon interactions. As a testbed for new ideas, we use optical microcavities with nonlinear materials inside. We are driven by fundamental physics questions relevant
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intriguing physical behavior, as they break spatio-temporal symmetries that normal mass-spring networks obey. In this project, you will seek to connect resonators in remote on-chip nanocavities, mediated by
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low loss is therefore highly desirable, especially at hypersound frequencies (~10 GHz). A key challenge is backscattering from defects, which could be mitigated using concepts from topological physics
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20 Jun 2026 Job Information Organisation/Company AMOLF Research Field Physics » Optics Researcher Profile Recognised Researcher (R2) Application Deadline 16 Dec 2026 - 09:50 (UTC) Country