• Acta Photonica Sinica
  • Vol. 53, Issue 5, 0553105 (2024)
Jinlong ZHU, Hongbing FU, and Qing LIAO*
Author Affiliations
  • Beijing Key Laboratory for Optical Materials and Photonic Devices,Department of Chemistry,Capital Normal University,Beijing 100048,China
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    DOI: 10.3788/gzxb20245305.0553105 Cite this Article
    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 Copy Citation Text show less
    Basic structure of laser
    Fig. 1. Basic structure of laser
    Stimulated absorption,spontaneous radiation,stimulated radiation
    Fig. 2. Stimulated absorption,spontaneous radiation,stimulated radiation
    Three-level system and four-level system
    Fig. 3. Three-level system and four-level system
    Common chemical structural formulas of organic laser crystal materials
    Fig. 4. Common chemical structural formulas of organic laser crystal materials
    Research progress of fluorescent laser[19-21]
    Fig. 5. Research progress of fluorescent laser19-21
    Research progress of TADF laser[35-40]
    Fig. 6. Research progress of TADF laser35-40
    Research progress of phosphorescent laser[43-45]
    Fig. 7. Research progress of phosphorescent laser43-45
    Research progress of F-P cavity laser[46-47]
    Fig. 8. Research progress of F-P cavity laser46-47
    Research progress of WGM laser[48-50]
    Fig. 9. Research progress of WGM laser48-50
    Emission patterns of the output beam for a one-order and a two-order organic DFB laser[53-54]
    Fig. 10. Emission patterns of the output beam for a one-order and a two-order organic DFB laser53-54
    Research progress of DFB laser[55-56]
    Fig. 11. Research progress of DFB laser55-56
    Research progress of DBR laser[58,60]
    Fig. 12. Research progress of DBR laser5860
    Research progress of PC laser[67-68]
    Fig. 13. Research progress of PC laser67-68
    Schematic of microcavity structure and experimentally obtained thickness-dependent reflectivity spectra[69]
    Fig. 14. Schematic of microcavity structure and experimentally obtained thickness-dependent reflectivity spectra69
    Research progress of VCSELs[70-71]
    Fig. 15. Research progress of VCSELs70-71
    Research progress of BEC[75-76]
    Fig. 16. Research progress of BEC75-76
    Research progress of topological lasers[93-94]
    Fig. 17. Research progress of topological lasers93-94
    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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