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This paper reports a 10 W solid state green laser TEM00 mode output operation, pumped by 3 x 40 W LD arrays.
For measurement a Partec CyFlow ML flow cytometer equipped with a diode-pumped solid state green laser (532 nm, 100 mW, Cobolt Samba; Cobolt AB, Stockholm, Sweden) was used.
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All solid state green-yellow electrochromic devices (ECD) performing in reflexion and built with Prussian Blue (PB) as electrochromic (EC) layer, CeO2 TiO2 as counter-electrode and PVB-based membrane as electrolyte have been assembled and characterized.
Monomode diode-pumped solid state (DPSS) green laser (λ = 532 nm) with average spot power density from 150 up to 350 mwasm2 was used.
The luminescence properties investigated in the solid state show intense green light emission at room temperature.
For fluorescence excitation three laser lines were used: A 488 nm DPSS laser (Sapphire-100, Coherent, Germany), a 532 nm solid state laser (LaNova50 Green, Lasos, Germany) and a 638 nm laser diode module (Cube635-25C, Coherent, Germany).
They emitted green light under UV irradiation in solid state and blue or green light in solution phase, respectively.
For the DNA content estimation of the isolated nuclei the Partec CyFlow ML flow cytometer with green solid state laser (532 nm wavelength and 150 mW) and band-pass 590 nm optical filter was used.
Samples were kept on ice for 30 min and 5,000 particles recorded using a Partec Cyflow SL3 flow cytometer (Partec GmbH) fitted with a 100 mW green solid state laser (532 nm, Cobolt Samba).
The most common green lasers use diode pumped solid state (DPSS) technology to create the green light.
Poly (ortho-aminophenol) (POAP) has been successfully synthesized by mechanochemical solid state polymerization (MCSSP) as a green method which is simple, rapid, free hazard solvent, economically route and environmental friendly method.
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