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1. Improved neutral and plasma density control with increasing lithium wall coatings in the Lithium Tokamak Experiment-β (LTX-β)

2. Post exposure time dependence of deuterium retention in lithium and lithium compounds

3. Sputtering of lithium and lithium compound films under deuterium and helium ion bombardment

4. Design and calibration of a retarding field energy analyzer for the LTX-β scrape off layer and modeling of electrostatic potential in a collisionless SOL

5. Elemental and topographical imaging of microscopic variations in deposition on NSTX-U and DIII-D samples

6. Effect of boronization on plasma-facing graphite surfaces and its correlation with the plasma behavior in NSTX-U

7. Elimination of inter-discharge helium glow discharge cleaning with lithium evaporation in NSTX

8. Toroidal asymmetries in divertor impurity influxes in NSTX

9. Initial studies of plasma facing component surface conditioning in the national spherical tokamak experiment upgrade with the materials analysis particle probe

10. Feasibility study of a high spatial and time resolution beam emission spectroscopy diagnostic for localized density fluctuation measurements in Lithium Tokamak eXperiment-β (LTX-β)

11. Hydrogen retention in lithium and lithium oxide films

12. Oxidation of lithium plasma facing components and its effect on plasma performance in the lithium tokamak experiment-β

13. The high

15. Unusual emission lines of carbon in the 170-190 Å region on NSTX

17. Results and future plans of the Lithium Tokamak eXperiment (LTX)

18. Overview of Innovative PMI Research on NSTX-U and Associated PMI Facilities at PPPL

19. The Materials Analysis Particle Probe (MAPP) Diagnostic System in NSTX

20. Effects of large area liquid lithium limiters on spherical torus plasmas

21. Status and Plans for the National Spherical Torus Experimental Research Facility

22. Current profile reconstruction using electron temperature imaging diagnostics

23. Supersonic gas injector for fueling and diagnostic applications on the National Spherical Torus Experiment

24. H-mode threshold and dynamics in the National Spherical Torus Experiment

25. Limiting MHD instabilities in improved-performance NSTX spherical torus plasmas

26. Recent results from the National Spherical Torus Experiment

27. Fast x-ray imaging of the National Spherical Tokamak Experiment plasma with a micropattern gas detector based on gas electron multiplier amplifier

28. Integrated impurity diagnostic package for magnetic fusion experiments

29. Imaging transmission grating spectrometer for magnetic fusion experiments

30. Results of NSTX heating experiments

31. Plasma–lithium interaction in the CDX-U spherical torus

32. Initial studies of core and edge transport of NSTX plasmas

33. Transient transport experiments in the current-drive experiment upgrade spherical torus

34. Multi-species impurity granule injection and mass deposition projections in NSTX-U discharges

35. Development progress of the Materials Analysis and Particle Probe

36. Effects of lithium wall-coatings on impurity ions in the lithium tokamak experiment (LTX)

37. Addressing the challenges of plasma-surface interactions in NSTX-U

38. Non-inductive current generation in NSTX using coaxial helicity injection

39. Initial physics results from the National Spherical Torus Experiment

40. Initial results from coaxial helicity injection experiments in NSTX

41. Multilayer mirror and foil filter AXUV diode arrays on CDX-U spherical torus

42. Electron Bernstein wave electron temperature profile diagnostic (invited)

43. Exploration of spherical torus physics in the NSTX device

44. Ultrasoft x-ray imaging system for the National Spherical Torus Experiment

45. High speed tangential soft x-ray camera for the study of magnetohydrodynamics instabilities

46. Low velocity boron micro-pellet injector for edge and core impurity transport measurements

47. Diagnostics for initial plasma operations on the National Spherical Torus Experiment

48. Magnetohydrodynamic behaviour during core transport barrier experiments with ion Bernstein wave heating in PBX-M: I ELMs, fluctuations and crash events

49. Magnetohydrodynamic behaviour during core transport barrier experiments with ion Bernstein wave heating in PBX-M: IIn=m- 1 andn=mmodes

50. Characterization of plasma parameters in shaped PBX-M discharges

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