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It is found that the defect emission (around 490 nm) from ZnS is dramatically tailored by the presence of Au nanoparticles.
The InAs-based structure, aiming at a longer wavelength emission (around 6 μm), has a slightly different sample layout: each active region is separated by a 25-nm-thick lattice-matched GaAsSb layer, and an InAs layer for electron confinement has a thickness of 2.95 nm, whereas a 3-nm-wide Ga0.76In0.24Sb layer confines holes.
This anomaly can be explained on the basis of different absorption and scattering of SUN emission (around 580 nm) signal by different tissues.
Intense emission around 11 nm and 13 nm is observed.
Photoluminescence spectra show the UV emission band around 368 nm, the violet emission around 420 nm, and the blue emission around 457 nm.
The device obtains low threshold current operation with lasing emission around 1.285 μm.
The green 5D4 7F5 emission around 545 nm dominates as is usually observed for Tb3+.
The emission around 3.31 eV has been a controversial issue for a long time [21 23].
The as-synthesized mesoporous alumina exhibits a strong visible emission around 500 nm, which is associated with the F+ center.
They exhibit strong excimer emission around 515 nm, which is used to monitor interaction of metal ions with the ionophores.
Photoluminescence spectra of the fabricated samples were measured (excitation at 980 nm) to examine the desired emission around 1535 nm.
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