Abstract
We describe the upgrades to the Thomson scattering (TS) diagnostic on the Lithium Tokamak eXperiment-beta (LTX-β) to provide complete radial coverage of the plasma. LTX-β is a spherical tokamak with plasma limited at a major radius of R = 14 cm and R = 66 cm. Flat temperature profiles with peaked density were observed in LTX-β using an existing multipoint TS diagnostic with radial coverage of the plasma core. There is a need for more comprehensive core and edge TS measurements to thoroughly examine beam fueling, beam heating, and transport under low recycling conditions with liquid lithium walls and a lower collisionality scrape-o_ layer (SOL). The core TS set up provides plasma profiles from R = 40-60 cm. To extend the TS diagnostic coverage: 1) we added a TS viewing optics to cover the SOL region at five radial points from R = 57-64 cm, and 2) another TS viewing optics in the HFS region from R = 15-45 cm to obtain TS data from ten radial positions while making use of the original laser beam. The main focus of this article is on the new HFS TS setup that is equipped with better-matched collection optics located in the horizontal midplane where the laser polarization lies and views from a scattering angle of 130_-150_ with respect to the laser path. A set of unequal-length Y-branched fiber bundles transports the TS light from two radial points to each polychromator. The new HFS view is better matched in spot size, scattering angle, and throughput to the laser and polychromators and has new V-grooved style viewing dumps. The new HFS TS view, along with the core and SOL TS views, will provide a full radial measurement coverage from R = 15-64 cm to explore the flat temperature profiles.
| Original language | English (US) |
|---|---|
| Pages (from-to) | 2775-2779 |
| Number of pages | 5 |
| Journal | IEEE Transactions on Plasma Science |
| Volume | 54 |
| Issue number | 6 |
| DOIs | |
| State | Published - Jun 1 2026 |
All Science Journal Classification (ASJC) codes
- Nuclear and High Energy Physics
- Condensed Matter Physics
Keywords
- Fiber bundles, F-number, laser, Lithium Tokamak eXperiment-beta (LTX-β), optical lens, Thomson scattering (TS)
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