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Band gap, explained by RP Photonics Encyclopedia; dielectrics,  semiconductors, metals, energy, electronic levels, band gap wavelength,  absorption, emission, fluorescence
Band gap, explained by RP Photonics Encyclopedia; dielectrics, semiconductors, metals, energy, electronic levels, band gap wavelength, absorption, emission, fluorescence

Direct bandgap photoluminescence from n-type indirect GaInP alloys
Direct bandgap photoluminescence from n-type indirect GaInP alloys

Diversity of band gap and photoluminescence properties of lead halide  perovskite: A halogen-dependent spectroscopic study - ScienceDirect
Diversity of band gap and photoluminescence properties of lead halide perovskite: A halogen-dependent spectroscopic study - ScienceDirect

Two yellow luminescence bands in undoped GaN | Scientific Reports
Two yellow luminescence bands in undoped GaN | Scientific Reports

Direct Bandgap-like Strong Photoluminescence from Twisted Multilayer MoS2  Grown on SrTiO3 | ACS Nano
Direct Bandgap-like Strong Photoluminescence from Twisted Multilayer MoS2 Grown on SrTiO3 | ACS Nano

Direct and indirect band gaps - Wikipedia
Direct and indirect band gaps - Wikipedia

How can we calculate the optical band gap from luminescence spectra ? |  ResearchGate
How can we calculate the optical band gap from luminescence spectra ? | ResearchGate

Schematic diagram of the interband luminescence process in (a) direct... |  Download Scientific Diagram
Schematic diagram of the interband luminescence process in (a) direct... | Download Scientific Diagram

How to calculate band gap energy from photoluminescence (PL) in origin -  YouTube
How to calculate band gap energy from photoluminescence (PL) in origin - YouTube

Effect of Photonic Band Gap on Photoluminescence in a Dye-Doped Blue Phase  Liquid Crystal | The Journal of Physical Chemistry B
Effect of Photonic Band Gap on Photoluminescence in a Dye-Doped Blue Phase Liquid Crystal | The Journal of Physical Chemistry B

Influence of energy gap between charge-transfer and locally excited states  on organic long persistence luminescence | Nature Communications
Influence of energy gap between charge-transfer and locally excited states on organic long persistence luminescence | Nature Communications

Photoluminescence investigation of the indirect band gap and shallow  impurities in icosahedral B12As2: Journal of Applied Physics: Vol 112, No 1
Photoluminescence investigation of the indirect band gap and shallow impurities in icosahedral B12As2: Journal of Applied Physics: Vol 112, No 1

Crystals | Free Full-Text | Towards a Germanium and Silicon Laser: The  History and the Present
Crystals | Free Full-Text | Towards a Germanium and Silicon Laser: The History and the Present

Electronic band structure and exciton luminescence spectra.: (a,b)... |  Download Scientific Diagram
Electronic band structure and exciton luminescence spectra.: (a,b)... | Download Scientific Diagram

Origins of Contrast | What is CL?
Origins of Contrast | What is CL?

Luminescence tuning of Ce3+, Pr3+ activated (Y,Gd)AGG system by band gap  engineering and energy transfer - ScienceDirect
Luminescence tuning of Ce3+, Pr3+ activated (Y,Gd)AGG system by band gap engineering and energy transfer - ScienceDirect

Schematic diagram of the interband luminescence process in (a) direct... |  Download Scientific Diagram
Schematic diagram of the interband luminescence process in (a) direct... | Download Scientific Diagram

Band-gap variation and a self-redox effect induced by compositional  deviation in ZnxGa2O3+x:Cr3+ persistent phosphors - Journal of Materials  Chemistry C (RSC Publishing)
Band-gap variation and a self-redox effect induced by compositional deviation in ZnxGa2O3+x:Cr3+ persistent phosphors - Journal of Materials Chemistry C (RSC Publishing)

Photoluminescence investigation of the indirect band gap and shallow  impurities in icosahedral B12As2: Journal of Applied Physics: Vol 112, No 1
Photoluminescence investigation of the indirect band gap and shallow impurities in icosahedral B12As2: Journal of Applied Physics: Vol 112, No 1

ZnPSe3 as ultrabright indirect band-gap system with microsecond excitonic  lifetimes | PNAS
ZnPSe3 as ultrabright indirect band-gap system with microsecond excitonic lifetimes | PNAS

Frontiers | Exploiting Cross-Luminescence in BaF2 for Ultrafast Timing  Applications Using Deep-Ultraviolet Sensitive HPK Silicon Photomultipliers
Frontiers | Exploiting Cross-Luminescence in BaF2 for Ultrafast Timing Applications Using Deep-Ultraviolet Sensitive HPK Silicon Photomultipliers