Optics and Precision Engineering, Volume. 30, Issue 21, 2793(2022)

Development of high performance and large size X-ray multilayer reflective optics

Qiushi HUANG, Runze QI, Zhe ZHANG, Wenbin LI, Li JIANG, Yunxue ZHANG, Yeqi ZHUANG, Zhong ZHANG, and Zhanshan WANG*
Author Affiliations
  • Institute of Precision Optical Engineering, MOE Key Laboratory of Advanced Micro-Structured Materials, School of Physics Science and Engineering, Tongji University, Shanghai200092, China
  • show less
    References(39)

    [1] C MORAWE. Multilayer based X-ray optics at the ESRF. AIP Conference Proceedings, 2054(2019).

    [2] D T ATTWOOD. Soft x-rays and extreme ultraviolet radiation: principles and applications(2000).

    [3] H J NI, Q S HUANG, G C LIU et al. Comparative study of Pd/B4C X-ray multilayer mirrors fabricated by magnetron sputtering with Kr and Ar gas. Materials (Basel, Switzerland), 13, 4504(2020).

    [4] C MORAWE, D CARAU, JCH PEFFEN. Double multilayer monochromators for upgraded ESRF beamlines, 10386, 1038603.4(2017).

    [5] K J S SAWHNEY, I P DOLBNYA, S M SCOTT et al. A double multilayer monochromator for the B16 test beamline at the diamond light source, 8139, 79-86(2011).

    [7] K YAMAUCHI, H MIMURA, T KIMURA et al. Single-nanometer focusing of hard x-rays by Kirkpatrick-Baez mirrors. Journal of Physics Condensed Matter: an Institute of Physics Journal, 23, 394206(2011).

    [8] C Q ZHU, J H TAN, Y H HE et al. Ultrafast structural dynamics using time-resolved X-ray diffraction driven by relativistic laser pulses. Chinese Physics B, 30, 630-635(2021).

    [9] Q S HUANG, V MEDVEDEV, R VAN DE KRUIJS et al. Spectral tailoring of nanoscale EUV and soft X-ray multilayer optics. Applied Physics Reviews, 4(2017).

    [10] Q S HUANG, J N FEI, Y LIU et al. High reflectance Cr/V multilayer with B4C barrier layer for water window wavelength region. Optics Letters, 41, 701-704(2016).

    [11] C BURCKLEN, S DE ROSSI, E MELTCHAKOV et al. High-reflectance magnetron-sputtered scandium-based X-ray multilayer mirrors for the water window. Optics Letters, 42, 1927-1930(2017).

    [12] J P SUTTER, P A CHATER, R SIGNORATO et al. 1 m long multilayer-coated deformable piezoelectric bimorph mirror for adjustable focusing of high-energy X-rays. Optics Express, 27, 16121-16142(2019).

    [13] R J CONLEY, B SHI, M ERDMANN et al. APS deposition facility upgrades and future plans, 9207, 121-126(2014).

    [14] I V KOZHEVNIKOV, I N BUKREEVA, E ZIEGLER. Design of X-ray supermirrors. Nuclear Instruments and Methods in Physics Research Section A: Accelerators, Spectrometers, Detectors and Associated Equipment, 460, 424-443(2001).

    [15] D C XU, Q S HUANG, Y W WANG et al. Enhancement of soft X-ray reflectivity and interface stability in nitridated Pd/Y multilayer mirrors. Optics Express, 23, 33018-33026(2015).

    [16] D L WINDT, E M GULLIKSON. Pd/B4C/Y multilayer coatings for extreme ultraviolet applications near 10 nm wavelength. Applied Optics, 54, 5850-5860(2015).

    [17] H FENG, H LI, X Y LONG et al. Author Correction: re-detection and a possible time variation of soft X-ray polarization from the Crab. Nature Astronomy, 4, 808(2020).

    [18] M W WEN, L JIANG, Z ZHANG et al. High reflectance Cr/C multilayer at 250 eV for soft X-ray polarimetry. Thin Solid Films, 592, 262-265(2015).

    [19] M W WEN, Q S HUANG, S MA et al. Improvement of interface structure and polarization performance of Co/C multilayers by incorporation of nitrogen. Optics Express, 24, 27166-27176(2016).

    [20] H LEGALL, H STIEL, G BLOBEL et al. A compact Laboratory Transmission X-ray Microscope for the water window. Journal of Physics: Conference Series, 463(2013).

    [21] E M GULLIKSON, F SALMASSI, A L AQUILA et al. Progress in short period multilayer coatings for water windowapplications(2006).

    [22] A GUGGENMOS, S RADÜNZ, R RAUHUT et al. Ion polished Cr/Sc attosecond multilayer mirrors for high water window reflectivity. Optics Express, 22, 26526-26536(2014).

    [23] R Z QI, Q S HUANG, J N FEI et al. Evolution of the internal structure of short-period Cr/V multilayers with different vanadium layers thicknesses. Materials (Basel, Switzerland), 12, 2936(2019).

    [24] J T FENG, Q S HUANG, H C WANG et al. Structure, stress and optical properties of Cr/C multilayers for the tender X-ray range. Journal of Synchrotron Radiation, 26, 720-728(2019).

    [25] J T FENG, Q S HUANG, R Z QI et al. Stability of Cr/C multilayer during synchrotron radiation exposure and thermal annealing. Optics Express, 27, 38493-38508(2019).

    [26] Y LIU, Q S HUANG, R Z QI et al. Microstructure evolution and hard X-ray reflectance of ultrathin Ru/C multilayer mirrors with different layer thicknesses. Materials Research Express, 8(2021).

    [27] Y LIU, Q S HUANG, R Z QI et al. Improvement of the microstructure and X-ray performance of ultrathin Ru/C multilayer mirror after high temperature treatment. Coatings, 11, 45(2021).

    [28] Q S HUANG, Y LIU, Y YANG et al. Nitridated Ru/B4C multilayer mirrors with improved interface structure, zero stress, and enhanced hard X-ray reflectance. Optics Express, 26, 21803-21812(2018).

    [30] M M BARYSHEVA, A E PESTOV, N N SALASHCHENKO et al. Precision imaging multilayer optics for soft X-rays and extreme ultraviolet bands. Physics-Uspekhi, 55, 681-699(2012).

    [31] IV KOZHEVNIKOV, IN BUKREEVA, E ZIEGLER. Design of X-ray supermirrors. Nuclear Instruments and Methods in Physics Research Section A: Accelerators, Spectrometers, Detectors and Associated Equipment, 460, 424-443(2001).

    [32] Z S WANG, A G MICHETTE. Optimization of depth-graded multilayer designs for EUV and X-ray optics, 4145, 243-253(2001).

    [33] Z S WANG, H C WANG, J T ZHU et al. Extreme ultraviolet broadband Mo/Y multilayer analyzers. Applied Physics Letters, 89, 241120(2006).

    [34] Y W WANG, Q S HUANG, Q YI et al. Design of Pd/B4C aperiodic multilayers for 8-12 nm region with flat reflectivity profile. Chinese Optics Letters, 14, 106-110(2016).

    [35] L JIANG, R Z QI, M W WEN et al. Development of the depth-graded multilayers for XTP mission, 9144, 454-459(2014).

    [36] H J NI, Q S HUANG, Y N SHI et al. Development of large-size multilayer mirrors with a linear deposition facility for X-ray applications. Optical Engineering, 58, 104105(2019).

    [37] X W YANG, I V KOZHEVNIKOV, Q S HUANG et al. Unified analytical theory of single-order soft X-ray multilayer gratings. Josa B, 32, 506-522(2015).

    [38] X W YANG, I V KOZHEVNIKOV, Q S HUANG et al. Analytic theory of alternate multilayer gratings operating in single-order regime. Optics Express, 25, 15987-16001(2017).

    [39] Q S HUANG, Q JIA, J T FENG et al. Realization of wafer-scale nanogratings with sub-50 nm period through vacancy epitaxy. Nature Communications, 10, 2437(2019).

    [40] A SOKOLOV, Q S HUANG, F SENF et al. Optimized highly efficient multilayer-coated blazed gratings for the tender X-ray region. Optics Express, 27, 16833-16846(2019).

    [41] Y F FENG, Q S HUANG, Y Q ZHUANG et al. Mo/Si lamellar multilayer gratings with high efficiency and enhanced resolution for the X-ray region of 1000-1700eV. Optics Express, 29, 13416-13427(2021).

    Tools

    Get Citation

    Copy Citation Text

    Qiushi HUANG, Runze QI, Zhe ZHANG, Wenbin LI, Li JIANG, Yunxue ZHANG, Yeqi ZHUANG, Zhong ZHANG, Zhanshan WANG. Development of high performance and large size X-ray multilayer reflective optics[J]. Optics and Precision Engineering, 2022, 30(21): 2793

    Download Citation

    EndNote(RIS)BibTexPlain Text
    Save article for my favorites
    Paper Information

    Received: Jul. 16, 2022

    Accepted: --

    Published Online: Nov. 28, 2022

    The Author Email: WANG Zhanshan (wangzs@tongji.edu.cn)

    DOI:10.37188/OPE.20223021.2793

    Topics