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The TL measurement was carried out using a green diode laser (wavelength 532 nm, 60 mW) and a He Ne laser (wavelength 632.8 nm, 0.5 mW) for excitation source and probe beam, respectively.
In this paper, a scanning laser induced fluorescence detection system for capillary electrophoresis microchip based on single-mode optical fiber has been established using a green diode pumped solid-state laser as excitation source.
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Measurements were carried out using a green (525 nm) light-emitting diode connected to a Hewlett-Packard 8116A pulse/function generator producing a 750 and 15 ms square voltage pulse for P3HT and PbSe cells, respectively.
The setup uses a green solid-state diode laser with a wavelength of 532 nm.
Individual QDs are selected using a focused helium-neon laser (λ = 632.8 nm) or a green diode laser (λ = 532 nm) for excitation.
The PL spectra were measured at 6 K with the optical multichannel analyzer and a green diode laser (532 nm).
To identify necrotic and late-apoptotic RGCs, we used PI with an excitation and emission maxima of 532 and 649 nm, respectively, with detection using a diode-pumped crystal green laser with a wavelength of 532 nm and a 650 nm cut-off filter on the photodetector.
Alexa Fluor 555 was excited using a 559-nm diode laser, and Alexa Fluor 647 was excited using a 635-nm diode laser.
Infrared reflectance images were generated using a diode laser at 830 nm.
Lignin autofluorescence was monitored using a 405 nm Diode laser.
Excitation was performed using a 405 nm diode laser (DAPI) and 488 nm argon laser (FITC).
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