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The direct-to-indirect band gap crossover in two-dimensional van der Waals Indium Selenide crystals | Scientific Reports
Photoluminescence spectra of the sample excited above the GaAs band gap... | Download Scientific Diagram
Efficient Excitonic Photoluminescence in Direct and Indirect Band Gap Monolayer MoS2 | Nano Letters
Atomically thin MoS2: A new direct-gap semiconductor
A) Photoluminescence spectra of the Ge1−xSnx films with 2, 4, 6, and 7%... | Download Scientific Diagram
Photoluminescence investigation of the indirect band gap and shallow impurities in icosahedral B12As2: Journal of Applied Physics: Vol 112, No 1
Spectral Properties of Semiconductor Quantum Nanoparticles
New two-dimensional semiconductor has ideal band gap for solar harvesting
a) Temperature-dependent PL spectra of sample C. Each curve is stacked... | Download Scientific Diagram
Evolution of the strain dependent PL spectra. (a) Quad-layer WSe 2... | Download Scientific Diagram
How to calculate band gap energy from photoluminescence (PL) in origin - YouTube
1) The band structure and photoluminescence spectrum | Chegg.com
Photoluminescence-based measurements of the energy gap and diffusion length of Zn3P2
Photoluminescence investigation of the indirect band gap and shallow impurities in icosahedral B12As2: Journal of Applied Physics: Vol 112, No 1
Indirect to direct bandgap transition in methylammonium lead halide perovskite
Band gap, explained by RP Photonics Encyclopedia; dielectrics, semiconductors, metals, energy, electronic levels, band gap wavelength, absorption, emission, fluorescence
Figure 2 from Strain-induced indirect to direct bandgap transition in multilayer WSe2. | Semantic Scholar
Efficient Excitonic Photoluminescence in Direct and Indirect Band Gap Monolayer MoS2. | Semantic Scholar
Band Gap Eg calculation from Photoluminescence (PL) Spectra - YouTube
Efficient Excitonic Photoluminescence in Direct and Indirect Band Gap Monolayer MoS2 | Nano Letters
Direct bandgap photoluminescence from n-type indirect GaInP alloys
Frontiers | Group IV Direct Band Gap Photonics: Methods, Challenges, and Opportunities
Direct bandgap photoluminescence from n-type indirect GaInP alloys