Published January 2014 | Version v1
Journal article

Injection and confinement of a laser pulse in an optical cavity for multi-pass Thomson scattering diagnostics in the TST-2 spherical tokamak device

  • 1. Tokyo Univ., Kashiwa, Chiba (Japan)
  • 2. Kyushu Univ., Kasuga, Fukuoka (Japan)
  • 3. National Institute for Fusion Science, Toki, Gifu (Japan)
  • 4. Japan Atomic Energy Agency, Naka, Ibaraki (Japan)

Description

A multi-pass Thomson scattering (TS) system based on confining laser pulses in an optical cavity was constructed for measuring very low-density plasma in the TST-2 spherical tokamak device. This paper describes the setup of the optical system, injection of the laser pulse into the cavity, and properties of the confined laser pulse. A combination of Pockels cell plus polarizer, which serves as an optical shutter, allows us to inject and then confine intense laser pulses in the cavity. A photodiode signal monitoring the very weak light leaking from the cavity mirrors demonstrated that the laser pulse makes many round trips, with a round-trip efficiency of approximately 0.73. The effective number of round trips (i.e., the signal enhancement factor) is approximately 3.7. For an injection efficiency of approximately 0.69, a cavity-confined laser pulse, applied to Thomson scattering, will yield a scattered signal that is five times larger than that from a single-pass laser pulse. (author)

Availability note (English)

Available from http://dx.doi.org/10.1585/pfr.9.1202005

Additional details

Identifiers

Publishing Information

Journal Title
Plasma and Fusion Research
Journal Volume
9
Journal Page Range
p. 1202005.1-1202005.3
ISSN
1880-6821

Optional Information

Notes
2 refs., 3 figs.