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SPIE Proceedings, 2003
Recent years have seen significant advances in both low and high energy X-ray microscopy. The image in X-ray microscopy is usually formed by differences in absorption of X-ray photons. Soft X-ray microscopy (energies below a few thousand eV) uses wavelengths under 10 nm. Since light wavelengths are approximately 500 nm, resolution is much better with X-
Stanislave I. Rokhlin +2 more
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Recent years have seen significant advances in both low and high energy X-ray microscopy. The image in X-ray microscopy is usually formed by differences in absorption of X-ray photons. Soft X-ray microscopy (energies below a few thousand eV) uses wavelengths under 10 nm. Since light wavelengths are approximately 500 nm, resolution is much better with X-
Stanislave I. Rokhlin +2 more
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1994
Ever since Rontgen discovered x rays almost 100 years ago, the possibility of using them for high-resolution imaging of both biological and nonbiological materials has been investigated. The early work reached a peak in the 1950s and 1960s through the work of Cosslett and Nixon (1960) on the development of the projection x-ray microscope, but interest ...
A. G. Michette, A. W. Potts
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Ever since Rontgen discovered x rays almost 100 years ago, the possibility of using them for high-resolution imaging of both biological and nonbiological materials has been investigated. The early work reached a peak in the 1950s and 1960s through the work of Cosslett and Nixon (1960) on the development of the projection x-ray microscope, but interest ...
A. G. Michette, A. W. Potts
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X-ray microscopy and X-ray imaging.
Scanning microscopy, 1987Within a framework of an overview of the current status and potential of X-ray microscopy, a description is given of the development of the King's College scanning instrument which produced its first images in September, 1986. The instrument was mounted on the newly-built undulator beam line at the UK Science and Engineering Research Council's SRS ...
Burge, R. E. +2 more
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Selection of Spectra for X-ray Microscopy
Advances in X-ray Analysis, 1958AbstractBy selecting particular spectra the contrast of images may be closely controlled. Furthermore, absorption analysis of regions as small as 10 microns may be performed. Application of the absorption technique on mineral sections and the instrumental requirements for the technique are discussed.
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1957
We should know little about the forms of material objects, large or small, were we unable to probe matter with radiation and interpret the consequences of their many interactions. Generally speaking, the evidence from a given radiation cannot disclose structural detail much smaller than the wavelength of the radiation itself, nor can information be ...
P. Kirkpatrick, H. H. Pattee
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We should know little about the forms of material objects, large or small, were we unable to probe matter with radiation and interpret the consequences of their many interactions. Generally speaking, the evidence from a given radiation cannot disclose structural detail much smaller than the wavelength of the radiation itself, nor can information be ...
P. Kirkpatrick, H. H. Pattee
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Reports on Progress in Physics, 1988
Developments in microscopy using soft X-rays (energies between about 100 eV and 2 keV) over the last ten years or so are reviewed. The main advances have been in intense sources, principally synchrotron radiation and plasma sources and in X-ray optical components such as grazing incidence reflectors, multilayer mirrors and zone plates.
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Developments in microscopy using soft X-rays (energies between about 100 eV and 2 keV) over the last ten years or so are reviewed. The main advances have been in intense sources, principally synchrotron radiation and plasma sources and in X-ray optical components such as grazing incidence reflectors, multilayer mirrors and zone plates.
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2000
Abstract Monochromatic X-rays interact with specimens in a very different way than light, infrared radiation or electrons. The highly specific interaction of these X-rays provides for elemental and chemical state analysis of samples in a range of environments including the wet state.
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Abstract Monochromatic X-rays interact with specimens in a very different way than light, infrared radiation or electrons. The highly specific interaction of these X-rays provides for elemental and chemical state analysis of samples in a range of environments including the wet state.
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Die Naturwissenschaften, 1996
Owing to the short wavelengths of X-radiation X-ray microscopes allow higher resolution than optical microscopes. In contrast to electron microscopes, X-radiation can be used to study relatively thick aqueous specimens in their natural environment. X-ray microscopes require intense X-radiation, which is best provided by electron storage rings, as well ...
G, Schmahl +5 more
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Owing to the short wavelengths of X-radiation X-ray microscopes allow higher resolution than optical microscopes. In contrast to electron microscopes, X-radiation can be used to study relatively thick aqueous specimens in their natural environment. X-ray microscopes require intense X-radiation, which is best provided by electron storage rings, as well ...
G, Schmahl +5 more
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Soft X-ray microscopy at a spatial resolution better than 15 nm
Nature, 2005W. Chao +6 more
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Physics Today, 1950
Reports from Stanford University and the General Electric Research Laboratory give new encouragement to the hope that some form of the x-ray microscope may one day be able to compete on a mature level with its older cousins, the light microscope and the electron microscope.
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Reports from Stanford University and the General Electric Research Laboratory give new encouragement to the hope that some form of the x-ray microscope may one day be able to compete on a mature level with its older cousins, the light microscope and the electron microscope.
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