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Here we report on organic photovoltaic's (OPV) suitable for low light applications.
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Therefore, the products from Zeiss are superior for lowest light applications.
Low-light applications currently use more exotic and expensive gallium arsenide.
LEDs, which contain a semiconducting material that lights up when current passes through it, are commonly used for low-light applications such as illuminating computer screens.
These photo detectors have a very promising photon detection efficiency and are therefore interesting for very low light flux applications such as scintillation and fluorescence light detection.
Finally, the same acquisition procedure and data processing could be employed also for other low light levels applications, such as bioluminescence.
Development of high quantum efficiency photon detectors is needed for many low light level (LLL) applications.
SiPM-based detectors are foreseen as good candidates for low light level detection applications requiring timing resolution in the few hundreds of picoseconds range.
Specifically, the optical response in the blue wavelength region (400 500 nm) can have transmission less than 10%, limiting the application of LCF in many low-light imaging applications.
These results indicate that the fabrication technique is highly beneficial to produce antireflective structures for Si-based device applications requiring low light reflection.
TiO2 absorbs mostly the UV part of the solar spectrum, which results in low efficiency of absorption for visible light applications.
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