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Field
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for biomedical applications. Experimental expertise in advanced optical system design, structured beam generation, and characterization methods will be advantageous. Familiarity with laser pulse shaping
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ultrastructural methodologies at the heart of this project using cryo-electron tomography (cryo-ET) combined with cryogenic correlated light and electron microscopy (cryo-CLEM) and cryo-focused ion beam (cryo-FIB
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. All aspects of this work are performed 'in house' using NIST's state-of-the-art nanofabrication, molecular beam epitaxy, and low-temperature optical spectroscopy tools. The successful candidate will
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structure and reactions, and in fundamental symmetries. The group leads experimental research programs at various particle accelerator laboratories, focusing on unstable beam experiments at the nearby
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and make particle beams more accessible for uses such as medical imaging. However, reaching very high particle energies in plasma accelerators is challenging. We are offering a postdoctoral position to
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for diagnostic and/or treatment purposes. Unlike external beam therapy, which is used to irradiate a tumor in a predetermined sites in the patient, the biomolecules employed by targeted radionuclide therapy
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user facilities, as well as in-house high-pressure studies, to investigate the structural, transport, and magnetic properties of materials. Responsibilities include preparing competitive beam time
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expertise: cleanroom processing, photolithography/nanolithography, thin-film deposition of solution-processable materials, and thermal/e-beam evaporation (metals/small molecules). Perovskite materials
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tumor and combination therapy of internal radiation and external beam radiotherapy for liver cancer. The scholar will have the opportunity to work on projects with novel radiopharmaceuticals including
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particle collider and make particle beams more accessible for uses such as medical imaging. However, reaching very high particle energies in plasma accelerators is challenging. We are offering a postdoctoral