Outputs

Committed to Open Science

Check out our most recent contributions to the scientific community freely accessible via the Live-Mirror Zenodo Community

Publications

  • Moretto, G., Thetpraphi, K., Laguna-Moreno, M., Saha, D., König, P., Hörber, J., Rogin, P., de Oliveira, P. W., Bruyère, V., Langlois, M., Cotroneo, V., Paola, A. M., Dieste, J. A., Rebasti, F. (2025). An innovative dynamic hybrid metamaterial structure created for an ultra-light, highly precise, and self-correcting live mirror. SPIE Proceedings Volume 13431, Electroactive Polymer Actuators, Sensors, and Devices (EAPAD) 2025. https://doi.org/10.1117/12.3050308

 

  • Colin, L., Audigier, D., Cottinet, P.-J., Capsal, J.-F. (2025). Fully printable plasticized fluorinated terpolymers for mirror active morphing control. SPIE Proceedings Volume 13431, Electroactive Polymer Actuators, Sensors, and Devices (EAPAD) 2025. https://doi.org/10.1117/12.3050308

 

  • Thetpraphi, K., Moretto, G., Bruyère, V., Capsal, J.-F., Audigier, D., Kuhn, J. R., Rebasti, F. (2025). Empowering Shape Corrections for Optical Mirror Surfaces through Customized Electroactive Polymer-Based Force-Actuators and Additive Manufacturing. Advanced Materials Technologies, 10 (14), 2402152. https://doi.org/10.1002/admt.202402152

 

  • Moretto, G., Kuhn, J., Capsal, J.-F., Audigier, D., Thetpraphi, K., Langlois, M., Gedig, M., Berdyugina, S. V., & Halliday, D. (2019). Hybrid dynamic structures for optical-quality surfaces shape control : Live-mirror. In M. Razeghi, J. S. Lewis, G. A. Khodaparast, & E. Tournié (Éds.), Quantum Sensing and Nano Electronics and Photonics XVI (p. 66). SPIE. https://doi.org/10.1117/12.2511625

     

    • Moretto, G., & Kuhn, J. R. (2014). Highly sensitive telescope designs for higher contrast observations. Advanced Optical Technologies3 (3), 251‑264. https://doi.org/10.1515/aot-2014-0017

     

    • Moretto, G., Kuhn, J. R., Capsal, J.-F., Audigier, D., Langlois, M., Thetpraphi, K., Berdyugina, S. V., Halliday, D., Tallon, M., & Gedig, M. (2018). The ExoLife Finder (Elf) Telescope : New adaptive optics and hybrid dynamic live-optical surfaces strategies. In R. Gilmozzi, H. K. Marshall, & J. Spyromilio (Éds.), Ground-based and Airborne Telescopes VII (p. 158). SPIE. https://doi.org/10.1117/12.2312599

     

     

    • Liu, Q., Le, M. Q., Richard, C., Liang, R., Cottinet, P.-J., & Capsal, J.-F. (2019). Enhanced pseudo-piezoelectric dynamic force sensors based on inkjet-printed electrostrictive terpolymer. Organic Electronics67, 259‑271. https://doi.org/10.1016/j.orgel.2019.01.028

     

    • Thetpraphi, K., Le, M. Q., Houachtia, A., Cottinet, P., Petit, L., Audigier, D., Kuhn, J., Moretto, G., & Capsal, J. (2019). Surface correction control based on plasticized multilayer p(Vdf‐trfe‐cfe) actuator—Live mirror. Advanced Optical Materials7 (13), 1900210. https://doi.org/10.1002/adom.201900210

     

     

    • Thetpraphi, K., Chaipo, S., Kanlayakan, W., Cottinet, P.-J., Le, M. Q., Petit, L., Audigier, D., Kuhn, J., Moretto, G., & Capsal, J.-F. (2020). Advanced plasticized electroactive polymers actuators for active optical applications : Live mirror. Advanced Engineering Materials, 22 (5), 1901540. https://doi.org/10.1002/adem.201901540

     

    • Thiébaut, É. M., Tallon, M., Langlois, M., Béchet, C., Moretto, G., Gelly, B. F., & Denis, L. (2018). Innovative real-time processing for solar adaptive optics. In D. Schmidt, L. Schreiber, & L. M. Close (Éds.), Adaptive Optics Systems VI (p. 55). SPIE. https://doi.org/10.1117/12.2313776

     

    • Dubost, N., Bharmal, N. A., Langlois, M., Loupias, M., Schott, C., Tallon, M., Staykov, L., Bardou, L. F., Osborn, J., Chemla, F., Cohen, M., Buey, T., Gendron, É., & Morris, T. J. (2020). First on-sky results of the CAWS wavefront sensor on the CANARY experiment. In D. Schmidt, L. Schreiber, & E. Vernet (Éds.), Adaptive Optics Systems VII (p. 48). SPIE. https://doi.org/10.1117/12.2561326

     

    • Capsal, J.-F., Galineau, J., Lallart, M., Cottinet, P.-J., & Guyomar, D. (2014). Plasticized relaxor ferroelectric terpolymer : Toward giant electrostriction, high mechanical energy and low electric field actuators. Sensors and Actuators A: Physical207, 25‑31. https://doi.org/10.1016/j.sna.2013.12.008

     

    • Le, M. Q., Capsal, J.-F., Galineau, J., Ganet, F., Yin, X., Yang, M., Chateaux, J.-F., Renaud, L., Malhaire, C., Cottinet, P.-J., & Liang, R. (2015). All-organic electrostrictive polymer composites with low driving electrical voltages for micro-fluidic pump applications. Scientific Reports5 (1), 11814. https://doi.org/10.1038/srep11814

     

    • Moretto, G. et al, SPIE Astronomy 2022 (Paper 12188- 11) and 73rd IAC (International Astronautical Congress) https://iac2022.org (Paper IAC-22,A7,3,x71176) (Sept.  2022)

     

    • Weber, K., Werdehausen, D., König, P., Thiele, S., Schmid, M., Decker, M., De Oliveira, P. W., Herkommer, A., & Giessen, H. (2020). Tailored nanocomposites for 3D printed micro-optics. Optical Materials Express10 (10), 2345. https://doi.org/10.1364/OME.399392

     

    • Al Dahoudi, N., AlKahlout, A., Heusing, S., Herbeck-Engel, P., Karos, R., & Oliveira, P. (2013). Indium doped zinc oxide nanopowders for transparent conducting coatings on glass substrates. Journal of Sol-Gel Science and Technology67 (3), 556‑564. https://doi.org/10.1007/s10971-013-3114-6

    Conferences

    • Capsal, J.-F., Lesenne, C., Audigier, D., Cottinet, P.-J., & Le Cottinet, M. Q. (2024, May 27-29). Fully Printable, Plasticized Fluorinated Terpolymers for Active Mirror Morphing Control. Nonlinear Metamaterials and Smart Structures. Lyon, France. https://633.euromech.org/program/scientific-program/

    Patents

    • Langlois, M., Moretto, G. et al (2024). Dispositif interférométrique Mach-Zehnder. FR3146358.
    • Capsal, J-F. et al (2014). Procédé de fabrication de matériau composite polarisable sous l’action d’un faible champ électrique. PCT/EP2014/057997.
    • de Oliveira, P. et al (2010). Conductive coatings based on ITO. DE102008058365A1.