Search Results - "Laramore, Diego"

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    Simulation and Validation of Charge Carrier Drift in Pixelated Microstructured Semiconductor Neutron Detectors by Laramore, Diego

    Published 01-01-2020
    “…A semiconductor neutron imaging device is proposed (X-MSND) based on high efficiency, Micro-structured Semiconductor Neutron Detector (MSNDs) bump bonded onto…”
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    Dissertation
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    Design of a micro-nuclear-mechanical system for strain measurement by Laramore, Diego, McNeil, Walter J., Bahadori, Amir A.

    “…Mechanical strain gauges are frequently used in real-time load sensing for applications including failure analysis and machine maintenance. To address the…”
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    Journal Article
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    Design and criticality analysis of colloidal slurry nuclear reactors by Laramore, Diego, Pfeifer, Michael P., Lindstrom, Jordan, Bindra, Hitesh

    Published in Annals of nuclear energy (01-01-2018)
    “…•A new colloidal slurry type nuclear reactor concept is presented and analyzed.•Separation distance between colloidal nuclear fuel particles can be manipulated…”
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    Journal Article
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    Simulation of signal formation and imaging in a dual-sided micro-structured semiconductor neutron detector by Sharma, Sanchit, Laramore, Diego, Bellinger, Steven, McNeil, Walter J., Bahadori, Amir A.

    “…Dual-sided micro-structured neutron detectors have the benefit of doubling neutron detection efficiency as compared to single-sided devices, by staggering 6…”
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    Conference Proceeding
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    Simulation of charge carrier transport in pixelated micro-structured semiconductor neutron detectors by Laramore, Diego, Sharma, Sanchit, Bellinger, Steven L., Bahadori, Amir A., McNeil, Walter J.

    “…Micro-structured Semiconductor Neutron Detectors (MSNDs) offer greater neutron sensing efficiency than thin-film coated diode devices and have been…”
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    Conference Proceeding
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    UV-LED Lithography System and Characterization by Shiba, Sabera Fahmida, Beavers, Jace, Laramore, Diego, Lindstrom, Bo, Brovles, James, Gaither, Corey, Hieber, Tyler, Kim, Jungkwun

    “…This paper presents a design, system setup, characterization, and microfabrication of high-intensity UV-LED microlithography. Since the high enough intensity…”
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    Conference Proceeding