All Stories

  1. Large-Area Mapping of Voids and Dislocations in Basal-Faceted Sapphire Ribbons by Synchrotron Radiation Imaging
  2. A new absorption-based method of X-ray microscopy using a nanofocusing refractive lens
  3. Theory of synchrotron radiation nanofocusing
  4. Near‐Field Phase‐Contrast Imaging of Micropores in Silicon Carbide Crystals with Synchrotron Radiation
  5. Problems with Evaluation of Micro-Pore Size in Silicon Carbide Using Synchrotron X-ray Phase Contrast Imaging
  6. Feasibility of X-ray beam nanofocusing with compound refractive lenses
  7. New kind of interference in the case of X-ray Laue diffraction in a single crystal with uneven exit surface under the conditions of the Borrmann effect. Analytical solution
  8. Synchrotron radiation diffraction in a single crystal of paratellurite investigated with a new experimental scheme
  9. Computer Simulations of X‐Ray Spherical Wave Laue Diffraction in a Thick Perfect Crystal with a Triangular Cutout on the Exit Surface
  10. Computer simulations of X-ray spherical wave dynamical diffraction in one and two crystals in the Laue case
  11. Rocking curve and spatial coherence properties of a long X-ray compound refractive lens
  12. An accurate theory of X-ray coplanar multiple SRMS diffractometry
  13. Microvoids in Solids: Synchrotron Radiation Phase Contrast Imaging and Simulations
  14. Spectrometer of Synchrotron Radiation Based on Diffraction Focusing a Divergent Beam Formed by a Compound Refractive Lens
  15. Transmission of an X-ray beam through a two-dimensional photonic crystal and the Talbot effect
  16. Effective aperture of X-ray compound refractive lenses
  17. Computer simulations of X-ray six-beam diffraction in a perfect silicon crystal. II
  18. Study of a macrodefect in a silicon carbid single crystal by means of X-ray phase contrast
  19. 30-Lens interferometer for high-energy X-rays
  20. Peculiarities of section topograms for the multiple diffraction of X rays
  21. Theory of an X-ray interferometer in the form of an array of planar compound refractive lenses
  22. X-ray diffraction and X-ray standing-wave study of the lead stearate film structure
  23. Computer simulations of X-ray six-beam diffraction in a perfect silicon crystal. I
  24. 30-lens interferometer for high energy x-rays
  25. A study of X-ray multiple diffraction by means of section topography
  26. Mechanisms of the formation of morphological features of micropipes in bulk crystals of silicon carbide
  27. X-ray multilens interferometer based on Si refractive lenses
  28. X-ray multilens interferometer based on Si refractive lenses
  29. Capsule-like voids in SiC single crystal: Phase contrast imaging and computer simulations
  30. Propagation of an X-ray beam modified by a photonic crystal
  31. Computer simulation of images of photonic crystals for hard X rays in a transmission scheme. Near field
  32. Quantitative hard x-ray phase contrast imaging of micropipes in SiC
  33. Spectrometer for hard X-ray free-electron laser based on diffraction focusing
  34. Computer analysis of two-dimensional images in the Zernike phase contrast method for hard X rays
  35. Multimode X-ray tomography at the mediana Station of the Kurchatov synchrotron radiation source
  36. On the cause of a contrast change in the SR images of micropipes in SiC
  37. Contact‐free reactions between micropipes in bulk SiC growth
  38. High-resolution study of (002, 113, 11−1) four-beam diffraction in Si
  39. Focusing femtosecond X-ray free-electron laser pulses by refractive lenses
  40. Theoretical analysis of the possibilities of Zernike phase contrast method in hard X rays for nondestructive imaging of micropipes in a silicon carbide single crystal
  41. Coplanar three-beam X-ray diffraction study in TeO2 single crystal using synchrotron radiation
  42. Nano and micro structures image based on asymmetric Bragg diffraction
  43. High-resolution study of (222, 113) three-beam diffraction in Ge
  44. Features in phase-contrast images of micropipes in SiC in white synchrotron radiation beam
  45. X-ray Interferometers Based on Refractive Optics
  46. Computer simulation of the zernike phase contrast in hard x-ray radiation using refractive lenses and zone plates
  47. Far-field x-ray phase contrast imaging has no detailed information on the object
  48. Diffraction imaging of crystals with focused x-ray beams
  49. High-resolution study of dynamical diffraction phenomena accompanying the Renninger (222/113) case of three-beam diffraction in silicon
  50. Observation of strong virtual scattering under three-beam (220, 371) X-ray diffraction in TeO2 single crystal
  51. High energy X-ray nanofocusing by silicon planar lenses
  52. Analysis of a spatial structure of a focused x-ray beam diffracted from crystals
  53. Problem of x-ray synchrotron beam collimation by zone plate
  54. Spatial structure of a focused X-ray beam diffracted from crystals
  55. X-Ray Nanointerferometer Based on Si Refractive Bilenses
  56. Elliptical micropipes in SiC revealed by computer simulating phase contrast images
  57. Wave theory of focusing monochromator of synchrotron radiation
  58. Semianalytical theory of focusing synchrotron radiation by an arbitrary system of parabolic refracting lenses and the problem of nano-focusing
  59. New imaging technique based on diffraction of a focused x-ray beam
  60. Computer simulation of phase-contrast images in white synchrotron radiation using micropipes in silicon carbide
  61. Correlated reduction in micropipe cross sections in SiC growth
  62. Bragg diffraction of a focused x-ray beam as a new depth sensitive diagnostic tool
  63. Trajectory method in the theory of Laue diffraction of X rays in crystals: II. Effect of total reflection at bending deformation
  64. Study of micropipe structure in SiC by x-ray phase contrast imaging
  65. On the theory of nuclear resonant forward scattering of synchrotron radiation
  66. Hard X-ray focusing by stacked Fresnel zone plates
  67. Focusing high energy X‐rays with stacked Fresnel zone plates
  68. Trajectory method in the theory of laue diffraction of X-rays in crystals: I. General formulas and accuracy estimation
  69. Simulations of Bragg diffraction of a focused x-ray beam by a single crystal with an epitaxial layer
  70. Study of optical properties of X-ray system based on two zone plates
  71. Source focusing and coherent imaging of a microscopic object at weak spatial coherence of the synchrotron radiation beam
  72. Numerical modeling of optical properties of a system of two zone plates for focusing hard synchrotron radiation
  73. Program for calculating the scattering parameters used in the X-ray standing wave method
  74. Dynamic variation in the lattice parameter of a crystal under ultrasonic treatment in X-ray diffraction experiments
  75. Diffraction reflection of a focused X-ray wave by a multilayer crystal
  76. X-ray parabolic lenses made from glassy carbon by means of laser
  77. Lattice modes in molecular crystals measured with nuclear inelastic scattering
  78. Possibilities of controlling an X-ray beam with a crystal subjected to long-wave ultrasonic vibrations
  79. Fluorescence EXAFS spectrometer for Kurchatov synchrotron radiation center. First experiments
  80. Planar parabolic X-ray refractive lens made of glassy carbon
  81. The live lattices become visible in coherent synchrotron X-rays
  82. Focusing of synchrotron radiation by compound refractive lenses made from glassy carbon
  83. Hard x-ray focusing with extremely long compound refractive lens
  84. Near-diffraction limited coherent x-ray focusing using planar refractive lenses made of epoxy SU-8 resist
  85. Combined Nuclear-Molecular Resonance Inelastic Scattering of X Rays
  86. An exact theory of imaging with a parabolic continuously refractive X-ray lens
  87. Specific properties of X-ray compound refractive lens. Theoretical analysis
  88. Diffraction theory of imaging with X-ray compound refractive lens
  89. On the theory of X-ray refractive optics: Exact solution for a parabolic medium
  90. The theory of incoherent scattering of synchrotron radiation by vibrating nuclei in a crystal
  91. On the Theory of X-Ray Diffraction and X-Ray Standing Waves in the Multilayered Crystal Systems
  92. Interferometric characterization of spatial coherence of high energy synchrotron X-rays
  93. Interferometric techniques for characterization of coherence of high-energy synchrotron X-rays
  94. X-Ray Standing Wave Analysis of the Effect of Isotopic Composition on the Lattice Constants of Si and Ge
  95. Nuclear inelastic scattering with161Dy
  96. Dynamics of electron density in a medium revealed by Mössbauer time-domain interferometry
  97. Theory of Imaging a Perfect Crystal under the Conditions of X-Ray Spherical Wave Dynamical Diffraction
  98. On the Theory of an X-Ray Fabry-Perot Interferometer
  99. Direct Measurement of Transverse Coherence Length of Hard X Rays from Interference Fringes
  100. Diffraction of X rays at a Bragg angle of π/2 (Back reflection) with consideration of multiwave effects
  101. Nuclear resonant inelastic absorption of synchrotron radiation in an anisotropic single crystal
  102. Pure nuclear resonant scattering of synchrotron radiation by a multilayer structure: Theoretical analysis for 169Tm
  103. Theory of nuclear resonant scattering of synchrotron radiation in the presence of diffusive motion of nuclei. II.
  104. Coherent Phenomenon in Reflection of Radiation by an Uneven Mirror
  105. Focusing high-energy x rays by compound refractive lenses
  106. <title>Refractive lenses for high-energy x-ray focusing</title>
  107. Anisotropic inelastic nuclear absorption
  108. <title>X-Ray tomography with micrometer spatial resolution</title>
  109. The method of phase retrieval of complex wavefield from two intensity measurements applicable to hard x-rays
  110. Phase-contrast hard X-ray microtomography by Bragg-Fresnel optics
  111. First Study of a Diffusion Mechanism with Synchrotron Radiation
  112. A compound refractive lens for focusing high-energy X-rays
  113. Phase-contrast microtomography with coherent high-energy synchrotron x rays
  114. Phase-sensitive multiple-diffraction studies of single crystals
  115. On the requirements to the instrumentation for the new generation of the synchrotron radiation sources. Beryllium windows
  116. On the possibilities of x-ray phase contrast microimaging by coherent high-energy synchrotron radiation
  117. <title>Bragg-Fresnel optics at the ESRF: microdiffraction and microimaging applications</title>
  118. Coherent scattering of a synchrotron radiation pulse by nuclei in vibrating crystals
  119. Theory of nuclear resonant scattering of synchrotron radiation in the presence of diffusive motion of nuclei
  120. Computer simulations and experimental investigations of X-ray multilayer mirrors
  121. Multilayer mirrors as synchrotron radiation monochromators
  122. On the Theory of Reflectivity by an X‐Ray Multilayer Mirror
  123. Direct Measurements of X-Ray Anomalous Transmission in Six-Beam Laue Diffraction
  124. Nuclear Bragg Diffraction of Synchrotron Radiation in the Presence of Acoustic Vibrations
  125. Multiple Diffraction in X-Ray Standing Wave Method: Photoemission Measurements
  126. X-ray standing-wave analysis of the Bi preferential distribution in Y3−x Bi x Fe5O12 thin films
  127. On the Possibility of Layer-by-Layer Analysis of Near-Surface Crystal Structure by the Method of Three-Beam X-Ray Diffraction
  128. Investigation of surface-layer structure of single crystals with triple-crystal X-ray diffractometry
  129. X-ray standing waves in the Laue case – location of impurity atoms
  130. X-ray standing waves under the conditions of multiple diffraction
  131. Photoeffect under the conditions of dynamical X-ray diffraction
  132. On the theory of six-beam X-ray spherical-wave diffraction
  133. The dynamical diffraction of X-ray spherical waves in two perfect crystals
  134. X-ray standing waves—a new method of studying the structure of crystals
  135. On the semiconductor energy gap in density functional theory
  136. The photoelectric voltage excited by X-ray standing waves in semiconductors with a p-n junction
  137. Six-Beam X-Ray Diffraction in Ge Single Crystals
  138. On the Theory of Exchange and Correlation in the Electron Gas at Metallic Densities
  139. On the role of correlations between electrons with antiparallel spins in the theory of the homogeneous electron gas
  140. Change of Interference Pattern in the X-Ray Section Topography of Single Crystals with Increasing Dimensions of an Incoherent Source
  141. The investigation of disturbed surface layer structure by the external photoeffect under X-ray diffraction conditions
  142. On the theory of a homogeneous interacting electron gas
  143. The method of integral characteristics in X-ray diffraction studies of the structure of the surface layers of single crystals
  144. On the theory of external photoeffect accompanying X-ray diffraction in an ideal crystal with disturbed surface layer
  145. Role of entrance slit in the X-ray section topography of single crystals
  146. Pendellösungfringes for X-ray spherical-wave diffraction in a perfect crystal
  147. Reply to the comment on the paper: On the theory of the Bragg reflection in the case of multiple X-ray diffraction
  148. A new type of monochromator for synchrotron radiation with three-wave Bragg diffraction
  149. On the Theory of the Bragg Reflection in the Case of Multiple X-Ray Diffraction
  150. On excitation of isomeric nuclear states in a crystal by synchrotron radiation
  151. Time delay in the resonance scattering of synchrotron radiation by nuclei in a crystal
  152. X-ray diffraction in a perfect crystal with disturbed surface layer
  153. Symmetrical cases of simultaneous X-ray diffraction and the Borrmann effect. I. The analysis of photoelectric absorption
  154. On the theory of simultaneous X-ray diffraction
  155. Borrmann effect in the three-wave case of X-ray diffraction