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, Raman microscopy can be used to view protein concentration gradients throughout a cell. Another angle of our research effort focuses on the low-frequency torsional modes (<200 cm-1 ) of proteins and
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NIST only participates in the February and August reviews. Research on photovoltaics focuses on the development of new and improved device characterization methods for various cell technologies and
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materials, cells, cell systems, and tissues—without the addition of exogenous labels. Recently, we have developed a broadband coherent anti-Stokes Raman scattering (BCARS) microscope system with unprecedented
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, physical, optical, and thermal properties of WBG semiconductors, including diamond, make these materials among the most prospective for high-frequency power electronics, quantum computing, solar-blind
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derived SI units in a chip-scale format, including atomic clocks, wavelength references, current sources and thermometers, all based on atomic vapor cell technology. We have strong connections with user