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1. Experimental reservoir computing with diffractively coupled VCSELs

2. Injection locking and coupling the emitters of large VCSEL arrays via diffraction in an external cavity

3. Deep Learning with Coherent VCSEL Neural Networks

5. Spin-lasing in bimodal quantum dot micropillar cavities

7. Interplay between emission wavelength and s-p splitting in MOCVD-grown InGaAs/GaAs quantum dots emitting above 1.3 {\mu}m

8. Excitonic complexes in MOCVD-grown InGaAs/GaAs quantum dots emitting at telecom wavelengths

9. Micropillars with a controlled number of site-controlled quantum dots

10. CSAR 62 as negative-tone resist for high-contrast e-beam lithography at temperatures between 4 K and room temperature

12. On the Contextualization of Event-Activity Mappings

14. Injection locking and coupling the emitters of large VCSEL arrays via diffraction in an external cavity

15. Coherent VCSEL homodyne neural networks

18. Coherent VCSEL Network Computing

19. Temperature dependence of refractive indices of Al0.9Ga0.1As and In0.53Al0.1Ga0.37As in the telecommunication spectral range

20. Spin‐Lasing in Bimodal Quantum Dot Micropillar Cavities

21. Coherent optical neural network with injection-locked VCSELs

23. Developing of a photonic hardware platform for brain-inspired computing based on 5X5 VCSEL arrays

24. Greedy Boolean Learning in Photonic Recurrent Neural Networks

25. Interplay between emission wavelength and s-p splitting in MOCVD-grown InGaAs/GaAs quantum dots emitting above 1.3 ��m

26. Interplay between emission wavelength and s-p splitting in MOCVD-grown InGaAs/GaAs quantum dots emitting above 1.3 μm

30. Semiconductor quantum dot to fiber coupling system for 1.3 um range

38. Fabrication of dense diameter-tuned quantum dot micropillar arrays for applications in photonic information processing.

42. Semiconductor quantum dot to fiber coupling system for 1.3μm range

43. CSAR 62 as negative-tone resist for high-contrast e-beam lithography at temperatures between 4K and room temperature.

44. Coherent VCSEL homodyne neural networks

45. Temperature dependence of refractive indices of Al 0.9 Ga 0.1 As and In 0.53 Al 0.1 Ga 0.37 As in the telecommunication spectral range.

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