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Diskriminierung aufgrund des Geschlechts Priester Ansager indirect band gap photoluminescence phonon Drinnen Zusatz Probe

Exciton-driven change of phonon modes causes strong temperature dependent  bandgap shift in nanoclusters | Nature Communications
Exciton-driven change of phonon modes causes strong temperature dependent bandgap shift in nanoclusters | Nature Communications

Strain engineering of 2D semiconductors and graphene: from strain fields to  band-structure tuning and photonic applications | Light: Science &  Applications
Strain engineering of 2D semiconductors and graphene: from strain fields to band-structure tuning and photonic applications | Light: Science & Applications

Hexagonal boron nitride is an indirect bandgap semiconductor | Nature  Photonics
Hexagonal boron nitride is an indirect bandgap semiconductor | Nature Photonics

Phonon-assisted luminescence in Hexagonal Boron Nitride
Phonon-assisted luminescence in Hexagonal Boron Nitride

Frontiers | Group IV Direct Band Gap Photonics: Methods, Challenges, and  Opportunities | Materials
Frontiers | Group IV Direct Band Gap Photonics: Methods, Challenges, and Opportunities | Materials

Indirect Bandgap Puddles in Monolayer MoS2 by Substrate‐Induced Local  Strain - Shin - 2016 - Advanced Materials - Wiley Online Library
Indirect Bandgap Puddles in Monolayer MoS2 by Substrate‐Induced Local Strain - Shin - 2016 - Advanced Materials - Wiley Online Library

Interaction of Nanoparticles with Radiation - A. Li
Interaction of Nanoparticles with Radiation - A. Li

Photoacoustic and modulated reflectance studies of indirect and direct band  gap in van der Waals crystals. - Abstract - Europe PMC
Photoacoustic and modulated reflectance studies of indirect and direct band gap in van der Waals crystals. - Abstract - Europe PMC

PDF] Phonon-Assisted Photoluminescence from Indirect Excitons in Monolayers  of Transition-Metal Dichalcogenides | Semantic Scholar
PDF] Phonon-Assisted Photoluminescence from Indirect Excitons in Monolayers of Transition-Metal Dichalcogenides | Semantic Scholar

Why Nano: Nano-Photonics
Why Nano: Nano-Photonics

Efficient Excitonic Photoluminescence in Direct and Indirect Band Gap  Monolayer MoS2. | Semantic Scholar
Efficient Excitonic Photoluminescence in Direct and Indirect Band Gap Monolayer MoS2. | Semantic Scholar

Electron-phonon interactions in subband excited photoluminescence of  hexagonal boron nitride - ScienceDirect
Electron-phonon interactions in subband excited photoluminescence of hexagonal boron nitride - ScienceDirect

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

Why does phonon absorption or emission occur in an indirect band gap  semiconductor? - Quora
Why does phonon absorption or emission occur in an indirect band gap semiconductor? - Quora

Band gap - Wikipedia
Band gap - Wikipedia

3. Indirect Semiconductors - Engineering LibreTexts
3. Indirect Semiconductors - Engineering LibreTexts

Indirect to direct band gap crossover in two-dimensional WS2(1−x)Se2x  alloys | npj 2D Materials and Applications
Indirect to direct band gap crossover in two-dimensional WS2(1−x)Se2x alloys | npj 2D Materials and Applications

Photoluminescence spectra of the sample excited above the GaAs band gap...  | Download Scientific Diagram
Photoluminescence spectra of the sample excited above the GaAs band gap... | Download Scientific Diagram

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

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

Temperature dependence of direct and indirect band gaps of Bi13I2S18  hexagonal rod crystals - ScienceDirect
Temperature dependence of direct and indirect band gaps of Bi13I2S18 hexagonal rod crystals - ScienceDirect

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

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

Direct to indirect bandgap conversion. (a) Mechanism of bandgap... |  Download Scientific Diagram
Direct to indirect bandgap conversion. (a) Mechanism of bandgap... | Download Scientific Diagram

PDF) Local Strain Induced Band Gap Modulation and Photoluminescence  Enhancement of Multilayer Transition Metal Dichalcogenides
PDF) Local Strain Induced Band Gap Modulation and Photoluminescence Enhancement of Multilayer Transition Metal Dichalcogenides

Efficient Excitonic Photoluminescence in Direct and Indirect Band Gap  Monolayer MoS2. | Semantic Scholar
Efficient Excitonic Photoluminescence in Direct and Indirect Band Gap Monolayer MoS2. | Semantic Scholar

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

02 Direct and Indirect Band Gap Semiconductor | PDF | Band Gap | Optics
02 Direct and Indirect Band Gap Semiconductor | PDF | Band Gap | Optics

Possible electric field induced indirect to direct band gap transition in  MoSe2 | Scientific Reports
Possible electric field induced indirect to direct band gap transition in MoSe2 | Scientific Reports