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Field
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, concentrator PV, quantum cutting, hot-carrier collection and photon transport, will be explored and enabled by absorber materials based on halide perovskites and novel semiconductors, supported by experimental
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Additional Information: BNL policy requires that after obtaining a PhD, eligible candidates for research associate appointments may not exceed a combined total of 5 years of relevant work experience as a post
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well as uphold IT services and safety regulations at work. Mandatory Qualifications Education PhD in Solid State Physics or a related field. Experience and Technical Skills Familiarity with phoTonic crystals and
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neural circuit analysis with experience in: In vivo two-photon imaging or Electrophysiology in behaving animals Quantitative data analysis and computational modeling of network activity This is a full-time
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approaches Develop models to address the dynamics of electrons, excitons, and photons in atomic-scale optical environments (e.g., quantum master equation, Lindblad formalism) Integrate results of ab-initio
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: Candidates must have received a Ph.D. by the commencement of employment. BNL policy requires that after obtaining a PhD, eligible candidates for research associate appointments may not exceed a combined total
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FieldChemistryEducation LevelPhD or equivalent Skills/Qualifications Holder of a PhD in Organic Chemistry, you ideally have already worked on organic synthesis, supramolecular chemistry and photoredox chemistry. You are
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the full meta-crystal and the resulting nanoantennas. The ideal candidate brings a solid background in 2D materials for photonic applications, with hands-on experience in material manipulation techniques
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device- and microwave engineering Job requirements The project revolves around NV centers in diamond, single-spin control, magnetization dynamics, superconductivity, single-photon and atomic-force
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University of North Carolina at Chapel Hill | Chapel Hill, North Carolina | United States | 5 days ago
at Physics and Astronomy of UNC-CH is seeking a postdoc researcher to work on developing hybrid optoelectronic, photonic, and magnonic platforms for advanced quantum signal sensing and energy transduction