Design and fabrication of prototype piezoelectric adjustable X-ray mirrors

Julian Walker, Tianning Liu, Mohit Tendulkar, D. N. Burrows, Casey T. DeRoo, Ryan Allured, Edward Hertz, Vincenzo Cotroneo, Paul B. Reid, Eric D. Schwartz,

Optics Express · 2018 · 24 citations · 28 references

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Abstract

Lynx, a next generation X-ray observatory concept currently under study, requires lightweight, high spatial resolution X-ray mirrors. Here we detail the development and fabrication of one of the candidate technologies for Lynx, piezoelectric adjustable X-ray optics. These X-ray mirrors are thin glass shell mirrors with Cr/Ir X-ray reflective coatings on the mirror side and piezoelectric thin film actuators on the actuator side. Magnetron sputtering was used to deposit metal electrodes and metal-oxide piezoelectric layers. The piezoelectric (Pb<sub>0.995</sub>(Zr<sub>0.52</sub>Ti<sub>0.48</sub>)<sub>0.99</sub>Nb<sub>0.01</sub>O<sub>3</sub>) was divided into 112 independent piezoelectric actuators, with 100% yield achieved. We discuss the fabrication procedure, residual thermal stresses and tuning of the Cr/Ir coating stress for the purposes of stress balancing.

References

28