Extreme ultraviolet digital in-line holography using a tabletop source

被引:4
|
作者
Zuerch, Michael [1 ]
Spielmann, Christian [1 ,2 ]
机构
[1] Univ Jena, Inst Opt & Quantum Elect, Abbe Ctr Photon, D-07743 Jena, Germany
[2] Helmholtz Inst Jena, D-07743 Jena, Germany
关键词
TRANSMISSION; MICROSCOPY;
D O I
10.1364/AO.54.005992
中图分类号
O43 [光学];
学科分类号
070207 ; 0803 ;
摘要
Digital in-line holography (DIH) offers fast, lensless, and aberration-free imaging with diffraction-limited resolution and inherently combines phase-and amplitude-contrast imaging, as well as three-dimensional imaging. Extending this technique to shorter wavelengths allows increasing the achievable spatial and phase-contrast resolution, as well as accessing material parameters not accessible in the optical domain. In this paper, we report on DIH experiments conducted with a coherent tabletop ultrafast high harmonic source operated at 38 nm wavelength. Applying a twin-image-free reconstruction scheme optimized for highly absorbing samples, we were able to demonstrate the phase-contrast imaging of silicon nitride sheets of 15 nm thickness and the use of the strong absorption of extreme ultraviolet in matter for amplitude-contrast imaging of thin films with spatial resolution below 1 mu m. High-resolution morphology determination in combination with phase-contrast imaging is of special importance in thin-film characterization and applications arising thereof. (C) 2015 Optical Society of America
引用
收藏
页码:5992 / 5997
页数:6
相关论文
共 50 条
  • [21] Digital in-line particle holography: twin-image suppression using sparse blind source separation
    Hattay, Jamel
    Belaid, Samir
    Lebrun, Denis
    Naanaa, Wady
    SIGNAL IMAGE AND VIDEO PROCESSING, 2015, 9 (08) : 1767 - 1774
  • [22] Digital in-line particle holography: twin-image suppression using sparse blind source separation
    Jamel Hattay
    Samir Belaid
    Denis Lebrun
    Wady Naanaa
    Signal, Image and Video Processing, 2015, 9 : 1767 - 1774
  • [23] Tabletop storage ring MIRRORCLE extreme ultraviolet lithography source
    Yamada, Hironari
    Minkov, Dorian
    Hayashi, Taichi
    Hasegawa, Daisuke
    JOURNAL OF MICRO-NANOLITHOGRAPHY MEMS AND MOEMS, 2012, 11 (02):
  • [24] Source for extreme ultraviolet lithography by the tabletop storage ring MIRRORCLE
    Yamada, Hironari
    Minkov, Dorian
    Toyosugi, Norio
    Morita, Masaki
    Hasegawa, Daisuke
    Moon, Ahsa
    Okoye, Ejike Kenneth
    JOURNAL OF MICRO-NANOLITHOGRAPHY MEMS AND MOEMS, 2008, 7 (04):
  • [25] Recovering the size of nanoparticles by digital in-line holography
    Pejchang, Darawan
    Coetmellec, Sebastien
    Grehan, Gerard
    Brunel, Mare
    Lebrun, Denis
    Chaari, Anis
    Grosges, Thomas
    Barchiesi, Dominique
    OPTICS EXPRESS, 2015, 23 (14): : 18351 - 18360
  • [26] Properties of digital holography based on in-line configuration
    Xu, L
    Miao, JM
    Asundi, A
    OPTICAL ENGINEERING, 2000, 39 (12) : 3214 - 3219
  • [27] In-line digital holography with double knife edge
    Ramirez, Claudio
    Iemmi, Claudio
    Campos, Juan
    MODELING ASPECTS IN OPTICAL METROLOGY V, 2015, 9526
  • [28] Phase retrieval methods in in-line digital holography
    Rong, Lu
    Wang, Dayong
    Wang, Yunxin
    Huang, Haochong
    Zhongguo Jiguang/Chinese Journal of Lasers, 2014, 41 (02):
  • [29] Lensless hyperspectral spectromicroscopy with a tabletop extreme-ultraviolet source
    Gardner, Dennis F.
    Zhang, Bosheng
    Seaberg, Matthew H.
    Shanblatt, Elisabeth R.
    Porter, Christina L.
    Karl, Robert, Jr.
    Mancuso, Christopher
    Kapteyn, Henry C.
    Murnane, Margaret M.
    Adams, Daniel E.
    METROLOGY, INSPECTION, AND PROCESS CONTROL FOR MICROLITHOGRAPHY XXX, 2016, 9778
  • [30] Single channel in-line multimodal digital holography
    Rivenson, Yair
    Katz, Barak
    Kelner, Roy
    Rosen, Joseph
    OPTICS LETTERS, 2013, 38 (22) : 4719 - 4722