Jinlong ZHU, Hongbing FU, Qing LIAO. Advances in Organic Microcavity Lasers Based on Different Resonant Cavity Structures(Invited)[J]. Acta Photonica Sinica, 2024, 53(5): 0553105

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- Acta Photonica Sinica
- Vol. 53, Issue 5, 0553105 (2024)

Fig. 1. Basic structure of laser

Fig. 2. Stimulated absorption,spontaneous radiation,stimulated radiation

Fig. 3. Three-level system and four-level system

Fig. 4. Common chemical structural formulas of organic laser crystal materials
![Research progress of fluorescent laser[19-21]](/Images/icon/loading.gif)
![Research progress of TADF laser[35-40]](/Images/icon/loading.gif)
![Research progress of phosphorescent laser[43-45]](/Images/icon/loading.gif)
![Research progress of F-P cavity laser[46-47]](/Images/icon/loading.gif)
![Research progress of WGM laser[48-50]](/Images/icon/loading.gif)
![Emission patterns of the output beam for a one-order and a two-order organic DFB laser[53-54]](/Images/icon/loading.gif)
Fig. 10. Emission patterns of the output beam for a one-order and a two-order organic DFB laser[53-54]
![Research progress of DFB laser[55-56]](/Images/icon/loading.gif)
![Research progress of DBR laser[58,60]](/Images/icon/loading.gif)
![Research progress of PC laser[67-68]](/Images/icon/loading.gif)
![Schematic of microcavity structure and experimentally obtained thickness-dependent reflectivity spectra[69]](/Images/icon/loading.gif)
Fig. 14. Schematic of microcavity structure and experimentally obtained thickness-dependent reflectivity spectra[69]
![Research progress of VCSELs[70-71]](/Images/icon/loading.gif)
![Research progress of BEC[75-76]](/Images/icon/loading.gif)
![Research progress of topological lasers[93-94]](/Images/icon/loading.gif)

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