[1] D. Apai, T.D. Milster, D.W. Kim, A. Bixel, G. Schneider, R. Liang, J. Arenberg. A thousand earths: A very large aperture, ultralight space telescope array for atmospheric biosignature surveys.
[2] T.D. Milster, Y.S. Kim, Z. Wang, K. Purvin. Multiple-order diffractive engineered surface lenses.
[3] J. Barbuzano. “Future of Astronomy”.
[4] Y. Zhang, R. Liang, O.J. Spires, S. Yin, A. Yi, T.D. Milster. Precision glass molding of diffractive optical elements with high surface quality.
[5] M.L. Dupuis, T.H. Holzer, J.W. Arenberg. Planning and optimizing multiple-order diffractive engineered surface lens production via integrated cost, schedule, and risk modeling.
[6] M.A. Esparza, H. Choi, D.W. Kim. Alignment of Multi-Order Diffractive Engineered (MODE) lens segments using the Kinematically-Engaged Yoke System.
[7] H. Choi, M.A. Esparza, R. Luu, T. Milster, D. Apai, D. Kim. Autonomous closed-loop control for multi-segmented optic aligning and assembly.
[8] M.A. Esparza, R. Luu, H. Choi, T.D. Milster, D. Apai, D. Kim. Progress towards alignment of Multi-Order Diffractive Engineered (MODE) lens segments using the Kinematically-Engaged Yoke System (KEYS) for optical performance testing.
[9] D. Kim, T.D. Milster, D. Apai. Nautilus: The advent of large lens-based space telescopes.