1971IEEE Journal of Quantum ElectronicsRequires access

Helium cleanup in the helium-cadmium laser discharge

T. P. Sosnowski, Martin Klein

Open publisher page 5 citations

Abstract

We have observed a rapid loss of helium from the discharge volume when operating certain types of sealed-off helium-cadmium laser tubes. In severe cases, a loss over a hundred times larger than that possible by diffusion through the glass walls has been observed. Experiments are described indicating that the lost helium is trapped in cadmium, which condenses on the tube walls in the vicinity of the active discharge. Possible trapping mechanisms are discussed. An improved discharge tube design is presented that effectively eliminates the helium cleanup.

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What this paper is about

We have observed a rapid loss of helium from the discharge volume when operating certain types of sealed-off helium-cadmium laser tubes. In severe cases, a loss over a hundred times larger than that possible by diffusion through the glass walls has been observed. Experiments are described indicating that the lost helium is trapped in cadmium, which condenses on the tube walls in the vicinity of the active discharge. Possible trapping mechanisms are discussed. An improved discharge tube design is presented that effectively eliminates the helium cleanup.

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Available abstract

We have observed a rapid loss of helium from the discharge volume when operating certain types of sealed-off helium-cadmium laser tubes. In severe cases, a loss over a hundred times larger than that possible by diffusion through the glass walls has been observed. Experiments are described indicating that the lost helium is trapped in cadmium, which condenses on the tube walls in the vicinity of the active discharge. Possible trapping mechanisms are discussed. An improved discharge tube design is presented that effectively eliminates the helium cleanup.

Key concepts: Helium, Gas-filled tube, Materials science, Trapping, Laser, Glass tube, Tube (container), Atomic physics

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