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Showing 1 to 5 of 5 for “"Plasma-materials Interactions"”.

  1. Development and simulation of a cylindrical cusped-field thruster and a diagnostics tool for plasma-materials interactions

    A low power, Hall-effect type plasma thruster known as the MIT-Cylindrical Cusped- Field Thruster (MIT-CCFT) has been developed and simulated using a fully-kinetic plasma model, the Plasma Thruster particle-in-cell (PTpic) model. Similar to the Diverging Cusped-Field Thruster (DCFT) previously …

    mit Repository record for Development and simulation of a cylindrical cusped-field thruster and a diagnostics tool for plasma-materials interactions (opens in a new tab)

  2. Development of accelerator based spatially resolved ion beam analysis techniques for the study of plasma materials interactions in magnetic fusion devices

    Plasma-material interactions (PMI) in magnetic fusion devices pose significant scientific and engineering challenges for the development of steady-state fusion power reactors. Understanding PMI is crucial for the develpment of magnetic fusion devices because fusion plasmas can significantly modify …

    mit Repository record for Development of accelerator based spatially resolved ion beam analysis techniques for the study of plasma materials interactions in magnetic fusion devices (opens in a new tab)

  3. Study of temperature dependence of hydrogen retention in lithium coatings on stainless steel with the Materials Analysis Particle Probe (MAPP)

    Plasma materials interactions (PMI) in tokamak machines play a crucial role in the overall plasma performance. For this reason PMI research has gained great interest during the last couple of decades. Proper conditioning of Plasma Facing Components (PFCs) has shown to have dramatic effects in …

    uiuc Repository record for Study of temperature dependence of hydrogen retention in lithium coatings on stainless steel with the Materials Analysis Particle Probe (MAPP) (opens in a new tab)

  4. Flow control and associated technologies to advance the application of TEMHD-driven liquid lithium in fusion devices

    … devices, evidence points to the fact that solid plasma facing components will not be able to endure the conditions without extensive damage. Plasma-materials interactions with these surfaces lead to material defects, impurity formation, and cooling of the edge plasma. In order to alleviate these …

    uiuc Repository record for Flow control and associated technologies to advance the application of TEMHD-driven liquid lithium in fusion devices (opens in a new tab)