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Quantum optics with organic molecules: cavity QED, optomechanics, and cooperativity Abstract Laboratory manipulation of single quantum emitters and single photons has matured to a routine procedure over the past two decades. These activities have motivated new emerging topics such as coherent cooperative interactions among several quantum emitters and the development of quantum networks. In this presentation, I summarize our efforts of the last decade in coupling single molecules to high-finesse Fabry-Perot cavities and nanoscopic waveguides on a chip, demonstrating dipole-induced transparency, strong coupling and single-photon nonlinearity. I will then present the latest results on the coupling of two individual molecules to a common mode of a micro-resonator and discuss routes for scaling up to many molecules. Moreover, I report on precision spectroscopy of vibronic transitions in single molecules as well as a theoretical conception for a hybrid optomechanical platform, which allows one to achieve long coherence and storage times.