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Cesium Chloride 99,9% - CsCl - 10.0g
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 25,00
Acrylic Element cube - He Helium - 50mm
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 99,00
Film of pressed nano Black Phosphorus stabilized on adhesive tape
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Tantalum - big density-standard cube 10 cm3 ~ 169 grams
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Iridium metal arc melted bead, 32 grams, 99,95% purity!
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 7 440,00
Erbium - Metal sublimed 99,99%  in ampoule under argon!
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 35,08
Acrylic Element cube - Cerium Ce - 50mm
 99,00
World’s Lightest Solid, Silica Aerogel Sample (Frozen Smoke) NASA, 10ml
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Chromium rod 99.9% - ~46g - Ø 12.7 x 50mm
 85,00
Samarium potassium phosphate glass ingot 30mm
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Phosphate glass

Phosphate glasses are glass materials based on phosphorus pentoxide (P2O5) with some added chemical components. They are used as laser gain media – both in bulk lasers and in the form of optical fibers. One of their primary advantages is their very high solubility for rare earth ions (→ rare-earth-doped laser gain media) such as erbium (Er3+), ytterbium (Yb3+) and neodymium (Nd3+). This means that high concentrations of laser-active rare earth ions can be incorporated into phosphate glasses without detrimental effects such as clustering, which could degrade the performance via quenching effects.

Phosphate glasses have a very low glass transition temperature, typically below 400 °C. Therefore, phosphate fiber ends melt relatively easily when being heated in high-power operation. Special care is therefore required for pump injection when realizing high-power fiber lasers and amplifiers with phosphate glasses.
Phosphate glasses exhibit a much lower optical damage threshold and a lower thermal conductivity than silica glasses.

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