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background-size: cover;"> <div class="container"> <div class="content"> <h1 class="content-title">Publications</h1> <section class="full-width-content"> <div id="footable_parent_383" class=" footable_parent ninja_table_wrapper loading_ninja_table wp_table_data_press_parent semantic_ui "> <table data-ninja_table_instance="ninja_table_instance_0" data-footable_id="383" data-filter-delay="1000" aria-label="Publications" id="footable_383" data-unique_identifier="ninja_table_unique_id_344044937_383" class=" foo-table ninja_footable foo_table_383 ninja_table_unique_id_344044937_383 ui table nt_type_legacy_table selectable striped vertical_centered footable-paging-right ninja_table_pro"> <colgroup> <col class="ninja_column_0 "> <col class="ninja_column_1 "> </colgroup> <thead> <tr class="footable-header"> <th scope="col" class="ninja_column_0 ninja_clmn_nm_title ">Title</th><th scope="col" class="ninja_column_1 ninja_clmn_nm_date ">Date</th></tr> </thead> <tbody> <tr data-row_id="101" class="ninja_table_row_0 nt_row_id_101"> <td><p>Sabau, A.S., et al. 2021. "Steady-state Mechanical Analysis for Target Assembly in the Material Plasma Exposure eXperiment Facility." Fusion Science and Technology. DOI: <a href="https://doi.org/10.1080/15361055.2021.1920785">10.1080/15361055.2021.1920785</a></p></td><td>10/08/2021</td> </tr> <tr data-row_id="86" class="ninja_table_row_1 nt_row_id_86"> <td><p>Tipton Jr., J.B., et al. 2021. "Analysis of Design Alternatives of Actively Cooled RF Window for MPEX."聽Fusion Science and Technology. DOI:聽<a href="https://doi.org/10.1080/15361055.2021.1898302">10.1080/15361055.2021.1898302</a></p></td><td>09/09/2021</td> </tr> <tr data-row_id="102" class="ninja_table_row_2 nt_row_id_102"> <td><p>Beers, C.J., et al. 2021. "RF sheath induced sputtering on Proto-MPEX. I. Sheath equivalent dielectric layer for modeling the RF sheath." Physics of Plasmas. DOI: <a href="https://doi.org/10.1063/5.0054074">10.1063/5.0054074</a></p></td><td>09/08/2021</td> </tr> <tr data-row_id="103" class="ninja_table_row_3 nt_row_id_103"> <td><p>Caneses Marin, J.F. 2021. "Characterizing the plasma-induced thermal loads on a 200-kW light-ion helicon plasma source via infra-red thermography." Plasma Sources Science and Technology. DOI: <a itemprop="sameAs" href="https://doi.org/10.1088/1361-6595/abf814">10.1088/1361-6595/abf814</a></p></td><td>07/13/2021</td> </tr> <tr data-row_id="105" class="ninja_table_row_4 nt_row_id_105"> <td><p>Thakur, S.C., et al. 2021. "PISCES-RF: a liquid-cooled, high power, steady-state, radio-frequency helicon plasma device." Plasma Sources Science and Technology. DOI: <a itemprop="sameAs" href="https://doi.org/10.1088/1361-6595/abef19">10.1088/1361-6595/abef19</a></p></td><td>05/21/2021</td> </tr> <tr data-row_id="104" class="ninja_table_row_5 nt_row_id_104"> <td><p>Beers, C.J., et al. 2021. "Development of the Material Analysis and Particle Probe for Proto-MPEX."聽Review of Scientific Instruments. DOI: <a href="https://doi.org/10.1063/5.0043111">10.1063/5.0043111</a></p></td><td>04/16/2021</td> </tr> <tr data-row_id="106" class="ninja_table_row_6 nt_row_id_106"> <td><p>Duckworth, R.C., et al. 2021. "Cryogenic Considerations for Superconducting Magnet System Design for the Material Plasma Exposure eXperiment (MPEX)." IEEE Transactions on Applied Superconductivity. DOI:聽<a href="http://10.1109/TASC.2021.3065628">10.1109/TASC.2021.3065628</a></p></td><td>03/11/2021</td> </tr> <tr data-row_id="88" class="ninja_table_row_7 nt_row_id_88"> <td><p>Burkhardt, E.E., et al. 2021. "Quench Protection Study of Superconducting Magnets for the Materials Plasma Exposure Experiment." IEEE Transactions on Applied Superconductivity. DOI: <a href="https://ieeexplore.ieee.org/document/9374754">10.1109/TASC.2021.3062789</a>.</p></td><td>03/10/2021</td> </tr> <tr data-row_id="87" class="ninja_table_row_8 nt_row_id_87"> <td><p>Burkhardt, E.E., et al. 2021. "Superconducting Magnet Qualification Methodology for the Material Plasma Exposure Experiment."聽IEEE Transactions on Applied Superconductivity. DOI: <a href="https://ieeexplore.ieee.org/document/9339970">10.1109/TASC.2021.3055179</a>.</p></td><td>01/28/2021</td> </tr> <tr data-row_id="89" class="ninja_table_row_9 nt_row_id_89"> <td><p>Lumsdaine, A., et al. 2020. "Testing and analysis of steady-state helicon plasma source for the Material Plasma Exposure eXperiment (MPEX)." Fusion Engineering and Design. <a href="https://doi.org/10.1016/j.fusengdes.2020.112001">DOI: 10.1016/j.fusengdes.2020.112001</a>.</p></td><td>09/15/2020</td> </tr> <tr data-row_id="90" class="ninja_table_row_10 nt_row_id_90"> <td><p>Lau, C., et al. 2020. "Heat Flux Analysis From IR Imaging on Proto-MPEX." <em>IEEE Transactions on Plasma Science</em>. DOI: <a href="https://ieeexplore.ieee.org/document/9159614">10.1109/TPS.2020.3011891</a>.</p></td><td>08/05/2020</td> </tr> <tr data-row_id="84" class="ninja_table_row_11 nt_row_id_84"> <td><p>Duckworth, R. C., et al. 2020. "Conceptual Design and Performance Considerations for Superconducting Magnets in the Material Plasma Exposure eXperiment".聽 IEEE Transactions on Plasma Science. DOI: <a _ngcontent-ggh-c184="" append-to-href="?src=document" target="_blank" href="https://doi.org/10.1109/TPS.2020.2985948" rel="noopener">10.1109/TPS.2020.2985948</a></p></td><td>05/20/2020</td> </tr> <tr data-row_id="91" class="ninja_table_row_12 nt_row_id_91"> <td><p>Rapp, J. et al. 2020. "The Material Plasma Exposure eXperiment: Mission and conceptual design." <em>Fusion Engineering and Design</em>. DOI: <a href="https://doi.org/10.1016/j.fusengdes.2020.111586">10.1016/j.fusengdes.2020.111586</a>.</p></td><td>02/29/2020</td> </tr> <tr data-row_id="139" class="ninja_table_row_13 nt_row_id_139"> <td><p>Caneses, J.F., et al. 2020. "Effect of magnetic field ripple on parallel electron transport during microwave plasma heating in the Proto-MPEX linear plasma device." Plasma Physics and Control Fusion. DOI: <a itemprop="sameAs" href="https://doi.org/10.1088/1361-6587/ab73d9">10.1088/1361-6587/ab73d9</a></p></td><td>02/25/2020</td> </tr> <tr data-row_id="141" class="ninja_table_row_14 nt_row_id_141"> <td><p>Kafle, N., et al. 2020. "Experimental investigation of the effects of magnetic mirror on plasma transport in Prototype-Material Plasma Exposure eXperiment." IEEE Transactions on Plasma Science. DOI: <a _ngcontent-acj-c184="" append-to-href="?src=document" target="_blank" href="https://doi.org/10.1109/TPS.2020.2974228" rel="noopener">10.1109/TPS.2020.2974228</a></p></td><td>02/25/2020</td> </tr> <tr data-row_id="140" class="ninja_table_row_15 nt_row_id_140"> <td><p>Rapp, J., et al. 2020. "The Materials Plasma Exposure eXperiment (MPEX): Status of the Physics Basis together with the Conceptual Design and Plans Forward." IEEE Transactions on Plasma Science. DOI: <a _ngcontent-nat-c184="" append-to-href="?src=document" target="_blank" href="https://doi.org/10.1109/TPS.2020.2970398" rel="noopener">10.1109/TPS.2020.2970398</a></p></td><td>02/13/2020</td> </tr> <tr data-row_id="142" class="ninja_table_row_16 nt_row_id_142"> <td><p>Lumsdaine, A., et al. 2020. "Conceptual Design and Analysis of In-Vessel Components for the Material Plasma Exposure eXperiment (MPEX)." IEEE Transactions on Plasma Science. DOI: <a _ngcontent-ifc-c184="" append-to-href="?src=document" target="_blank" href="https://doi.org/10.1109/TPS.2019.2958269" rel="noopener">10.1109/TPS.2019.2958269</a></p></td><td>01/17/2020</td> </tr> <tr data-row_id="138" class="ninja_table_row_17 nt_row_id_138"> <td><p>Lumsdaine, A., et al. 2019. "High Heat-Flux Target Design for the Materials Plasma Exposure eXperiment." Fusion Science and Technology. DOI: <a href="https://doi.org/10.1080/15361055.2019.1637239">10.1080/15361055.2019.1637239</a></p></td><td>07/22/2019</td> </tr> <tr data-row_id="63" class="ninja_table_row_18 nt_row_id_63"> <td><p>Caneses Marin, J., et al. 2019. "Ion Fluxes and Neutral Gas Ionization Efficiency of the 100-kW Light-Ion Helicon Plasma Source Concept for the Material Plasma Exposure eXperiment." Selected papers from the 23rd Topical Meeting on the Technology of Fusion Energy鈥擜dvanced Concepts and Materials. DOI: <a href="https://www.tandfonline.com/doi/full/10.1080/15361055.2019.1622988">10.1080/15361055.2019.1622988</a>.</p></td><td>06/28/2019</td> </tr> <tr data-row_id="137" class="ninja_table_row_19 nt_row_id_137"> <td><p>Goulding, R.H., et al. 2019. "Results of Ion Cyclotron Heating Experiments on Proto-MPEX Utilizing a Movable Stainless Steel Target." Fusion Science and Technology. DOI: <a href="https://doi.org/10.1080/15361055.2019.1623569">10.1080/15361055.2019.1623569</a></p></td><td>06/24/2019</td> </tr> <tr data-row_id="136" class="ninja_table_row_20 nt_row_id_136"> <td><p>Rapp, J., et al. 2019 "Latest Results from Proto-MPEX and the future plans for MPEX." Fusion Science and Technology. DOI: <a href="https://doi.org/10.1080/15361055.2019.1610315">10.1080/15361055.2019.1610315</a></p></td><td>06/05/2019</td> </tr> <tr data-row_id="135" class="ninja_table_row_21 nt_row_id_135"> <td><p>Biewer, T.M., et al. 2019. "Utilization of O-X-B mode conversion of 28 GHz microwaves to heat core electrons in the upgraded Proto-MPEX." Physics of Plasmas. DOI: <a href="https://doi.org/10.1063/1.5093321">10.1063/1.5093321</a></p> <p class="articleMetaDrop publicationContentDropZone" data-pb-dropzone="articleMetaDropZone"></p></td><td>05/20/2019</td> </tr> <tr data-row_id="134" class="ninja_table_row_22 nt_row_id_134"> <td><p>Rapp, J., et al. 2019. "Radial transport modeling of high density deuterium plasmas in proto-MPEX with the B2.5-Eirene code." Physics of Plasmas. DOI: <a href="https://doi.org/10.1063/1.5049808">10.1063/1.5049808</a></p></td><td>04/24/2019</td> </tr> <tr data-row_id="133" class="ninja_table_row_23 nt_row_id_133"> <td><p>Maingi, R., et al. 2019. "Summary of the FESAC Transformative Enabling Capabilities Panel Report." Fusion Science and Technology. DOI: <a href="https://doi.org/10.1080/15361055.2019.1565912">10.1080/15361055.2019.1565912</a></p></td><td>03/26/2019</td> </tr> <tr data-row_id="132" class="ninja_table_row_24 nt_row_id_132"> <td><p>Piotrowicz, P.A., et al. 2019. "Computational investigation of ion cyclotron heating on Proto-MPEX." Physics of Plasmas. DOI: <a href="https://doi.org/10.1063/1.5065784">10.1063/1.5065784</a></p></td><td>03/21/2019</td> </tr> <tr data-row_id="131" class="ninja_table_row_25 nt_row_id_131"> <td><p>Lau, C., et al. 2019. "Evidence of upper-hybrid electron heating on Proto-MPEX." Physics of Plasmas. DOI: <a href="https://doi.org/10.1063/1.5083814">10.1063/1.5083814</a></p></td><td>03/05/2019</td> </tr> <tr data-row_id="129" class="ninja_table_row_26 nt_row_id_129"> <td><p>Beers, C.J., et al. 2018. "Characterization of the helicon plasma flux to the target of Proto-MPEX."聽Fusion and Engineering Design. DOI: <a class="doi" href="https://doi.org/10.1016/j.fusengdes.2018.11.056" target="_blank" rel="noreferrer noopener" aria-label="Persistent link using digital object identifier" title="Persistent link using digital object identifier">10.1016/j.fusengdes.2018.11.056</a></p></td><td>12/08/2018</td> </tr> <tr data-row_id="126" class="ninja_table_row_27 nt_row_id_126"> <td><p>Caneses Marin, J., et al. 2019. "Differential pumping requirements for the light-ion helicon source and heating systems of Proto-MPEX."聽<em>Physics of Plasmas.</em> DOI: <a href="https://doi.org/10.1063/1.5001519">10.1063/1.5001519</a></p></td><td>08/21/2018</td> </tr> <tr data-row_id="130" class="ninja_table_row_28 nt_row_id_130"> <td><p>Lumsdaine, A., et al. 2018. "Design and Analysis of an Actively Cooled Window for a High Power Helicon Plasma Source." 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DOI: <a href="https://doi.org/10.13182/FST12-565">10.13182/FST12-565</a></p></td><td>01/15/2013</td> </tr> </tbody><!--ninja_tobody_rendering_done--> </table> </div> </section> </div> </div> </div> <footer class="site-footer"> <div class="credits"> <div class="container">Oak Ridge National Laboratory is managed by UT-Battelle for the US Department of Energy</div> </div> <div class="org-wrapper"> <div class="container"> <div class="ornl-default"> <a target="_blank" href="http://www.ut-battelle.org/"> <img class="img-fluid org-logo pull-left" src="https://mpex.ornl.gov/wp-content/themes/sedna/images/UT-Battelle.png"> </a> <div class="mandatory-links"> <a target="_blank" href="https://www.ornl.gov/ornl/contact-us/Security--Privacy-Notice">Privacy</a> | <a target="_blank" href="https://www.ornl.gov/content/accessibility">Accessibility/508</a> | <a target="_blank" href="https://www.ornl.gov/content/notice-nondiscrimination-and-accessibility-requirements">Nondiscrimination/1557</a> </div> <a target="_blank" href="https://www.energy.gov/science/office-science"> <img class="img-fluid org-logo pull-right" src="https://mpex.ornl.gov/wp-content/themes/sedna/images/doe-logo.png"> </a> </div> </div> </div> </footer> <script type="text/javascript"> /*<![CDATA[*/ (function() { var sz = document.createElement('script'); 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