• Photonics Research
  • Vol. 11, Issue 7, 1339 (2023)
Zongliang Xie1、2、3、†, Kaiyuan Yang1、2、3、†, Yang Liu1、2、†, Tianrong Xu1、2, Botao Chen1、2, Xiafei Ma1、2, Yong Ruan1、2、3, Haotong Ma1、2、3、4, Junfeng Du1、2, Jiang Bian1、2、3, Dun Liu2, Lihua Wang2、3, Tao Tang1、2、3, Jiawei Yuan1、2, Ge Ren1、2、3, Bo Qi1、2、3、*, and Hu Yang1、2、3、5
Author Affiliations
  • 1Key Laboratory of Optical Engineering, Chinese Academy of Sciences, Chengdu 610209, China
  • 2Institute of Optics and Electronics, Chinese Academy of Sciences, Chengdu 610209, China
  • 3University of Chinese Academy of Sciences, Beijing 100049, China
  • 4e-mail: mahaotong@163.com
  • 5e-mail: yanghu@ioe.ac.cn
  • show less
    DOI: 10.1364/PRJ.486637 Cite this Article Set citation alerts
    Zongliang Xie, Kaiyuan Yang, Yang Liu, Tianrong Xu, Botao Chen, Xiafei Ma, Yong Ruan, Haotong Ma, Junfeng Du, Jiang Bian, Dun Liu, Lihua Wang, Tao Tang, Jiawei Yuan, Ge Ren, Bo Qi, Hu Yang. 1.5-m flat imaging system aligned and phased in real time[J]. Photonics Research, 2023, 11(7): 1339 Copy Citation Text show less
    References

    [1] R. Gilmozzi. Giant telescopes of the future. Sci. Am., 294, 64-71(2006).

    [2] X. Luo. Subwavelength artificial structures: opening a new era for engineering optics. Adv. Mater., 31, 1804680(2018).

    [3] H. P. Stahl. Survey of cost models for space telescopes. Opt. Eng., 49, 053005(2010).

    [4] S. Banerji, M. Meem, A. Majumder, F. G. Vasquez, B. Sensale-Rodriguez, R. Menon. Imaging with flat optics: metalenses or diffractive lenses. Optica, 6, 805-810(2019).

    [5] J. E. M. Whitehead, A. Zhan, S. Colburn, L. Huang, A. Majumdar. Fast extended depth of focus meta-optics for varifocal functionality. Photon. Res., 10, 828-833(2022).

    [6] H. Gao, Y. Wang, X. Fan, B. Jiao, T. Li, C. Shang, C. Zeng, L. Deng, W. Xiong, J. Xia, M. Hong. Dynamic 3D meta-holography in visible range with large frame number and high frame rate. Sci. Adv., 6, eaba8595(2020).

    [7] T. D. Milster, Y. S. Kim, Z. Wang, K. Purvin. Multiple-order diffractive engineered surface lenses. Appl. Opt., 59, 7900-7906(2020).

    [8] N. Yu, P. Genevet, M. A. Kats, F. Aieta, J. P. Tetienne, F. Capasso, Z. Gaburro. Light propagation with phase discontinuities: generalized laws of reflection and refraction. Science, 334, 333-337(2011).

    [9] A. U. R. Khalid, F. Feng, N. Ullah, X. Yuan, M. G. Somekh. Exploitation of geometric and propagation phases for spin-dependent rational-multiple complete phase modulation using dielectric metasurfaces. Photon. Res., 10, 877-885(2022).

    [10] L. Kang, H. Bao, D. H. Werner. Interference-enhanced optical magnetism in surface high-index resonators: a pathway toward high-performance ultracompact linear and nonlinear meta-optics. Photon. Res., 7, 1296-1305(2019).

    [11] D. Neshev, I. Aharonovich. Optical metasurfaces: new generation building blocks for multi-functional optics. Light Sci. Appl., 7, 58(2018).

    [12] H. Gao, X. Fan, W. Xiong, M. Hong. Recent advances in optical dynamic meta-holography. Opto-Electron. Adv., 4, 210030(2021).

    [13] H. Zhang, H. Liu, W. Xu, Z. Lu. Large aperture diffractive optical telescope: A review. Opt. Laser Technol., 130, 106356(2020).

    [14] F. Zhao, Z. Shen, D. Wang, B. Xu, X. Chen, Y. Yang. Synthetic aperture metalens. Photon. Res., 9, 2388-2397(2021).

    [15] L. Zhang, S. Chang, X. Chen, Y. Ding, M. T. Rahman, Y. Duan, M. Stephen, X. Ni. High-efficiency, 80-mm aperture metalens telescope. Nano Lett., 23, 51-57(2023).

    [16] R. Hyde. Eyeglass. 1.Very large aperture diffractive telescopes. Appl. Opt., 38, 4198-4212(1999).

    [17] R. Hyde, S. Dixit, A. Weisberg, M. Rushford. Eyeglass: a very large aperture diffractive space telescope. Proc. SPIE, 4849, 28-39(2002).

    [18] J. Early, R. Hyde, R. Baron. Twenty meter space telescope based on diffractive Fresnel lens. Proc. SPIE, 5166, 148-156(2004).

    [19] P. Atcheson, C. Stewart, J. Domber, K. Whiteaker, J. Cole, P. Spuhler, A. Seltzer, J. A. Britten, S. N. Dixit, B. Farmer, L. Smith. MOIRE-initial demonstration of a transmissive diffractive membrane optic for large lightweight optical telescopes. Proc. SPIE, 8442, 844221(2012).

    [20] J. A. Britten, S. N. Dixit, M. DeBruyckere, D. Steadfast, J. Hackett, B. Farmer, G. Poe, B. Patrick, P. D. Atcheson, J. L. Domber, A. Seltzer. Large-aperture fast multilevel Fresnel zone lenses in glass and ultrathin polymer films for visible and near-infrared imaging applications. Appl. Opt., 53, 2312-2316(2014).

    [21] P. Atcheson, J. Domber, K. Whiteaker, J. A. Britten, S. N. Dixit, B. Farmer. MOIRE: ground demonstration of a large aperture diffractive transmissive telescope. Proc. SPIE, 9143, 91431W(2014).

    [22] J. L. Domber, P. Atcheson, J. Kommers. MOIRE: ground test bed results for a large membrane telescope. Spacecraft Structures Conference, 1510(2014).

    [23] 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. Astron. J., 158, 83(2019).

    [24] D. W. Kim, H. Choi, T. Brendel, H. Quach, M. Esparza, H. Kang, Y. Feng, J. N. Ashcraft, X. Ke, T. Wang, E. S. Douglas. Advances in optical engineering for future telescopes. Opto-Electron. Adv., 4, 210040(2021).

    [25] M. A. Esparzaa, H. Choia, D. W. Kim. Alignment of multi-order diffractiv engineered (mode) lens segments using the kinematically-engaged yoke system. Proc. SPIE, 11487, 114870V(2020).

    [26] Y. Liu, Z. Xie, H. Ma, J. Chu, X. Ma, Y. Tan, D. Liu, J. Bian, H. Hu, B. Fan, B. Qi. Wide-band high-resolution synthetic imaging of a segmented large-scaled lightweight diffractive telescope. Opt. Lett., 45, 1790-1793(2020).

    [27] Y. Lin, Y. Dong, T. Sun, Y. Zhao, M. Wang, J. Hu, C. Wang, Z. Zeng, C. Jiang. High-efficiency optical sparse aperture metalens based on GaN nanobrick array. Adv. Opt. Mater., 10, 2102756(2022).

    [28] L. Schupmann. Die medial-fernrohre: eine neue konstruktion für grosse astronomische instrumente(1899).

    [29] B. Li, W. Yu, M. Chen, J. Tang, H. Xian. Co-focus experiment of segmented mirror. Chin. Phys. B, 26, 060706(2017).

    [30] S. Robbe, B. Sorrente, F. Cassaing, Y. Rabbia, G. Rousset, L. Dame, P. Cruzalebes, G. Schumacher. Active phase stabilization at the I2T: implementation of the ASSI table. Proc. SPIE, 2200, 222-230(1994).

    [31] J. Xue, A. Jiang, S. Wang, J. Wang. Design and experimental demonstration of pointing correction module for a Fizeau imaging interferometer. Appl. Opt., 57, 9936-9943(2018).

    [32] W. Lv, Z. Xie, Q. Wang, H. Ma, J. Shi, Y. Liu, K. Yang, B. Chen, Y. Huang. Tip/tilt alignment for a Fizeau interferometer via defocus-based sub-spot separation. IEEE Photon. J., 12, 3901113(2020).

    [33] G. Chanan, M. Troy, F. Dekens, S. Michaels, J. Nelson, T. Mast, D. Kirkman. Phasing the mirror segments of the Keck telescopes: the broadband phasing algorithm. Appl. Opt., 37, 140-155(1998).

    [34] F. Shi, B. M. King, N. Sigrist, S. A. Basinger. NIRCam long wavelength channel grisms as the dispersed fringe sensor for JWST segment mirror coarse phasing. Proc. SPIE, 7010, 70102E(2008).

    [35] W. Zhao, Q. Zeng. Simultaneous multi-piston measurement method in segmented telescopes. Opt. Express, 25, 24540-24552(2017).

    [36] J. F. Simar, Y. Stockman, J. Surdej. Single-wavelength coarse phasing in segmented telescopes. Appl. Opt., 54, 1118-1123(2015).

    [37] M. Ni, L. Benson, J. Camp, B. Herman. Autonomous tip/tilt alignment and phasing of a distributed aperture imaging testbed. Opt. Express, 18, 13051-13056(2010).

    [38] D. Mourard, W. Dali Ali, A. Meilland, N. Tarmoul, F. Patru, J. M. Clausse, P. Girard, F. Hénault, A. Marcotto, N. Mauclert. Group and phase delay sensing for cophasing large optical arrays. Mon. Not. R. Astron. Soc., 445, 2082-2092(2014).

    [39] Y. Ruan, T. Xu, Y. Liu, Z. Xie, H. Ma, J. Du, T. Yang, T. Tang, H. Yang, Z. Peng. Error-based observation control of an image-based control loop for disturbance suppression in segmented lightweight large-scaled diffractive telescope (SLLDT). Opt. Laser Eng., 156, 107105(2022).

    Zongliang Xie, Kaiyuan Yang, Yang Liu, Tianrong Xu, Botao Chen, Xiafei Ma, Yong Ruan, Haotong Ma, Junfeng Du, Jiang Bian, Dun Liu, Lihua Wang, Tao Tang, Jiawei Yuan, Ge Ren, Bo Qi, Hu Yang. 1.5-m flat imaging system aligned and phased in real time[J]. Photonics Research, 2023, 11(7): 1339
    Download Citation