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Description Combining organic monolayers with semiconductor surfaces is of interest for many differing applications including molecular electronics, sensors, and bio-electronics. Monolayers on semiconductor
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the use of light to probe and drive optomechanical systems for use in practical sensors and fundamental quantum measurement science. Our primary current research direction involves the use of diffractive
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, optical and e-beam lithography, magnetic sensors (e.g., GMR, MTJ, SQUIDs, atomic magnetometers), magnetic nanoparticles, and magnetic particle imaging (MPI). References: Bui TQ, Biacchi AJ, Dennis CL, Tew
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RAP opportunity at National Institute of Standards and Technology NIST Dimensional Metrology Location Physical Measurement Laboratory, Sensor Science Division opportunity location 50.68.51.C1080
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for implementing the major types of AMO systems on chip—including miniaturized stable wavelength reverences, optical atomic clocks, quantum sensors, Rydberg atom RF imaging probes, quantum memories, and others. [1
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the development of superconducting devices such as transition-edge sensors and superconducting nanowire single photon detectors, as well as single photon sources based on quantum dots, spontaneous parametric down
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measurements with fundamentally limited performance. Sensor types of particular interest include accelerometers, gyroscopes, and acoustic and ultrasound detectors, which can be more sensitive than
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stages, advanced motion control, and instrument system integration. Research opportunities are available in the areas of design and analysis of MEMS sensors and actuators, micro- and nanofabrication, and
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plane arrays for use in CMB measurements. The sensor elements are superconducting transition-edge sensors that are read out by multiplexed SQUIDs. The research will involve the development of beam-forming
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performance modeling capabilities that simultaneously consider multiple performance aspects, robust IAQ and other performance metrics, and measurement methods, sensors, and data to evaluate and verify building