Active optics - A new technology for the control of light
Active optics - From the test set up to the NTT in the observatory
Active optics - key technology of the new generation telescopes.
Active optics and control architecture for a giant segmented mirror telescope
Active optics and coronagraphy with the Hubble Space Telescope
Active optics and deformed toroid concave gratings: higher order aspherizations
Active optics and modified-Rumsey wide-field telescopes: MINITRUST demonstrators with vase- and tulip-form mirrors
Active optics and the axisymmetric case: MINITRUST wide-field three-reflection telescopes with mirrors aspherized from tulip and vase forms
Active optics and the New Technology Telescope (NTT): the key to improved optical quality at lower cost in large astronomical telescopes.
Active optics and the New Technology Telescope - Better optical quality in a larger telescope with lower costs
Active optics and the non-axisymmetric case: multimode deformable mirrors aspherized from vase and meniscus forms
Active optics and x-ray telescope mirrors
Active Optics at Work
Active optics challenges of a thirty-meter segmented mirror telescopy
Active optics concept for hypertelescope aberration control and pupil densification
Active optics control of VST telescope secondary mirror
Active optics correction of thermal distortion of a 1.8 meter mirror
Active optics experiments for thin meniscus mirror
Active optics experiments with a 62 cm thin mirror
Active optics for JNLT.