Differential interference contrast x-ray microscopy with twin zone plates
暂无分享,去创建一个
J. Susini | T. Wilhein | F. Romanato | E. Fabrizio | S. Cabrini | B. Kaulich | M. Altissimo | B. Fayard
[1] J. Liñares,et al. Zone plates with initial phase shift for optical sensing , 1992 .
[2] J. Kirz,et al. Soft X-ray microscopes and their biological applications , 1995, Quarterly Reviews of Biophysics.
[3] G. Schneider,et al. Cryo X-ray microscopy with high spatial resolution in amplitude and phase contrast. , 1998, Ultramicroscopy.
[4] A. Snigirev,et al. On the possibilities of x-ray phase contrast microimaging by coherent high-energy synchrotron radiation , 1995 .
[5] Graeme Morrison. Some Aspects Of Quantitative X-Ray Microscopy , 1989, Other Conferences.
[6] P. Cloetens,et al. Phase objects in synchrotron radiation hard x-ray imaging , 1996 .
[7] Nakajima Kazutoshi,et al. Modified Zone-plate Interferometer for Testing Aspheric Surfaces , 1980 .
[8] B. Niemann,et al. Differential Phase Contrast X-Ray Microscopy , 1998 .
[9] Alan G. Michette,et al. Optical Systems for Soft X Rays , 2011, Springer US.
[10] D. Attwood. Soft X-Rays and Extreme Ultraviolet Radiation , 1999 .
[11] J. Susini,et al. Single-movement fixed-exit channelcut x-ray monochromator based on profiled surfaces , 1999 .
[12] Zbigniew Jaroszewicz,et al. Interferometric alignment using parabolic and off-axis conical zone plates. , 1990, Applied optics.
[13] B. Niemann,et al. Amplitude- and Phase-Contrast X-Ray Microscopy , 1988, Short Wavelength Coherent Radiation: Generation and Applications.
[14] Rod Balhorn,et al. New high‐resolution zone‐plate microscope at beamline 6.1 of the ALS , 1995 .
[15] H. Wolter. Spiegelsysteme streifenden Einfalls als abbildende Optiken für Röntgenstrahlen , 1952 .
[16] D. Joyeux,et al. An interferometric determination of the refractive part of optical constants for carbon and silver across soft X-ray absorption edges , 1999 .
[17] J. Susini,et al. High-efficiency multilevel zone plates for keV X-rays , 1999, Nature.
[18] R. F. Stevens,et al. Zone-plate interferometers , 1988 .
[19] R. Smartt,et al. Zone plate interferometer. , 1974, Applied optics.
[20] Dirk Rudolph,et al. Phase Contrast X-Ray Microscopy — Experiments at the BESSY Storage Ring , 1988 .
[21] Gilles Peix,et al. 3D microtomography of cancellous bone samples using synchrotron radiation , 1996, Medical Imaging.
[22] Henry N. Chapman,et al. Applications of a CCD detector in scanning transmission x‐ray microscope , 1995 .
[23] S. Wilkins,et al. Phase-contrast imaging using polychromatic hard X-rays , 1996, Nature.
[24] Françoise Peyrin,et al. Observation of microstructure and damage in materials by phase sensitive radiography and tomography , 1997 .
[25] Atsushi Momose,et al. Phase-contrast x-ray computed tomography for observing biological specimens and organic materials , 1995 .
[26] D. Malacara-Hernández,et al. Holographic interferometer to test optical surfaces. , 1975, Applied optics.
[27] K. Nugent,et al. Noninterferometric quantitative phase imaging with soft x rays. , 2000, Journal of the Optical Society of America. A, Optics, image science, and vision.
[28] Robin Medenwaldt,et al. Description of an x-ray microscope with 30 nm resolution , 1998 .
[29] D. Joyeux,et al. Applications of wavefront division interferometers in soft x rays , 1995 .
[30] P Cloetens,et al. A synchrotron radiation microtomography system for the analysis of trabecular bone samples. , 1999, Medical physics.
[31] F. Zernike. How I discovered phase contrast. , 1955, Science.
[32] H Rose,et al. Nonstandard imaging methods in electron microscopy. , 1977, Ultramicroscopy.
[33] P. Charalambous,et al. Feasibility of transmission x-ray microscopy at 4 keV with spatial resolutions below 150 nm , 1999 .
[34] Burkhard Kaulich,et al. Differential interference contrast x-ray microscopy with submicron resolution , 2001 .
[35] Gao,et al. X-ray image contrast from a simple phase object. , 1995, Physical review letters.
[36] F. Müller,et al. Resonance frequency shifts caused by the friction of a drop of water in air: An approach to estimate shear forces in scanning probe microscopies , 2001 .
[37] Jean Susini,et al. Two zone plate interference contrast microscopy at 4 keV photon energy , 2001 .
[38] Gerd Schneider,et al. Phase contrast studies of biological specimens with the x‐ray microscope at BESSY (invited) , 1995 .
[39] R Feder,et al. Transmission microscropy of unmodified biological materials: comparative radiation dosages with electrons and ultrasoft x-ray photons. , 1977, Ultramicroscopy.
[40] L. Reimer,et al. Scanning Electron Microscopy , 1984 .
[41] C. Roychoudhuri,et al. A holographic, radial and lateral shear interferometer , 1974 .
[42] Emil Wolf,et al. Principles of Optics: Contents , 1999 .
[43] J. Susini,et al. Current status of the Scanning X-ray Microscope at the ESRF , 2000 .
[44] I. McNulty. The future of X-ray holography , 1994 .
[45] M. V. R. K. Murty. Common Path Interferometer Using Fresnel Zone Plates , 1963 .
[46] B. Niemann,et al. X-ray microscopy with synchrotron radiation. , 1976, Applied optics.
[47] C. Preza,et al. Rotational-diversity phase estimation from differential-interference-contrast microscopy images. , 2000, Journal of the Optical Society of America. A, Optics, image science, and vision.
[48] J. Kirz,et al. X-ray microscopy with synchrotron radiation , 1998, Nature Structural Biology.
[49] S. Wilkins,et al. Phase-contrast imaging of weakly absorbing materials using hard X-rays , 1995, Nature.
[50] David Attwood,et al. Soft X-rays and Extreme Ultraviolet Radiation: INTRODUCTION , 1999 .
[51] J. Susini,et al. The X-Ray Microscopy Facility Project at the ESRF , 1998 .