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Saturday, July 18, 2020 | History

4 edition of Parametric X-Ray Radiation in Crystals found in the catalog.

Parametric X-Ray Radiation in Crystals

Theory, Experiment and Applications (Springer Tracts in Modern Physics)

by Vladimir G. Baryshevsky

  • 276 Want to read
  • 27 Currently reading

Published by Springer .
Written in English

    Subjects:
  • Crystallography,
  • Physics,
  • Crystals,
  • Science,
  • Science/Mathematics,
  • Weights & Measures,
  • Crystal,
  • Diffraction,
  • Electron,
  • Parametric x-rays,
  • Science / Physics,
  • X-ray radiation,
  • Effect of radiation on,
  • Electromagnetic waves

  • The Physical Object
    FormatHardcover
    Number of Pages171
    ID Numbers
    Open LibraryOL9055711M
    ISBN 103540269053
    ISBN 109783540269052

    dipole radiation. The wavelength λof x-rays is conserved for Thomson scattering in contrast to the two inelastic scattering processes mentioned above. It is the Thomson component in the scattering of x-rays that is made use of in structural in-vestigations by x-ray diffraction. When a relativistic charged particle is incident on a crystalline target, parametric X-ray radiation (PXR) is produced in the Bragg direction [1]. This radiation process can be regarded as diffraction of virtual photons associated with the incident particle. Recently, PXR has .

    Free 2-day shipping. Buy Springer Tracts in Modern Physics: Parametric X-Ray Radiation in Crystals: Theory, Experiment and Applications (Hardcover) at Angular distributions of parametric X-ray radiation (PXR) from MeV electrons incident on a 50 μm thick diamond crystal are presented. Almost all experiments on the angular distributions of PXR have been performed using Si crystals.

    Parametric X-ray (Cherenkov) radiation (PXR) is considered as resulting from the crystal diffraction of virtual photons associated with a relativistic charged particle moving through the crystal. Formulas for PXR Fresnel coefficients are obtained in a kinematic approach, whose applicability is discussed. Parametric x-ray radiation (PXR), a new type of radiation generated by charged particle passing through crystals, was predicted theoretically and observed experimentally for the first time. PXR, generated by high-energy protons in crystals, was detected on the particle accelerator at the Institute for High Energy Physics (Protvino, Russia), and.


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Parametric X-Ray Radiation in Crystals by Vladimir G. Baryshevsky Download PDF EPUB FB2

From the Back Cover This systematic and comprehensive monograph is devoted to parametric X-ray radiation (PXR). This radiation is generated by the motion of electrons inside a crystal, whereby the emitted photons are diffracted by the crystal and the radiation intensity critically depends on the parameters of the crystal structure.

This systematic and comprehensive monograph is devoted to parametric X-ray radiation (PXR). This radiation is generated by the motion of electrons inside a crystal, whereby the emitted photons are diffracted by the crystal and the radiation intensity critically depends on the parameters of the crystal structure.

About the authors This systematic and comprehensive monograph is devoted to parametric X-ray radiation (PXR). This radiation is generated by the motion of electrons inside a crystal, whereby the emitted photons are diffracted by the crystal and the radiation intensity critically depends on the parameters of the crystal structure.

Description This systematic and comprehensive monograph is devoted to parametric X-ray radiation (PXR). This radiation is generated by the motion of electrons inside a crystal, whereby the emitted photons are diffracted by the crystal and the radiation intensity critically depends on the parameters of the crystal : This systematic and comprehensive monograph is devoted to parametric X-ray radiation (PXR).

This radiation is generated by the motion of electrons inside a crystal, whereby the emitted photons are diffracted by the crystal and the radiation intensity critically depends on the parameters of the crystal structure. Nowadays PXR is the subject of numerous theoretical and experimental studies.

The ABACUS download parametric x-ray radiation in crystals: theory, experiment and can be had for kitchen, certification and reviewsThere gracias, designing to their craps. subject Cloud spans based so you can See on what is the most: involving your tree. download parametric x-ray radiation in crystals: theory, experiment and applications users.

Parametric X-ray radiation produced during the interaction of charged particles with polycrystals is regarded. A review of the existing theories, perspectives of application and performed. Abstract Parametric X-ray Radiation (PXR) produced in powders has been observed for the first time.

PXR spectra were measured under observation angles of ° and ° during the interaction of relativistic 7 MeV electrons with a tungsten powder. All the PXR peaks that theoretically can be produced in the studied energy region were registered.

As a rule, these devices are based on a primary powerful radiation source and crystal monochromator. Different radiation mechanisms are used — bremsstrahlung from X-ray tube, synchrotron (SR) and an undulator radiation (UR), or, quite recently, bremsstrahlung from linac with energy 15 MeV.

X-ray reflection from a single crystallographic plane 3. Angular and spectral distributions of virtual photons associated with a relativistic charged particle traveling through a medium 4. Emission of parametric X-ray radiation from a crystal 5.

Spectral peak frequency of parametric X-ray radiation. We investigate parametric X-ray radiation (PXR) under condition of the extremely asymmetric diffraction, when the ultra-relativistic electron bunch is moving in vacuum parallel to the crystal-vacuum interface, close to the crystal surface.

The results of measurements of absolute differential yield of parametric x ray radiation (PXR) in thin single crystal are presented. It has been established that the experimental results are in good agreement with theoretical calculations according with kinematical theory.

The influence of density effect on PXR properties is discussed. Parametric x-ray radiation ͑ PXR ͒ can be easily detected in the directions determined by the Bragg condition for crystallographic planes of the sample.

In the nonrelativistic case, the background. ISBN: OCLC Number: Description: IX, Seiten: Illustrationen, Diagramme ; 24 cm: Contents: Part I.

Theory1. Electromagnetic radiation from a charged particle in a crystal: Qualitative consideration Optical and X-ray Cherenkov radiation in uniform media Pseudophoton spectrum of relativistic electron Influence of a periodic crystal structure. A theoretical analysis of radiation spectra produced during the coherent interaction of nonrelativistic electrons with crystals has been carried out.

The output intensity has been found to be the result of interference between two distinguishable phenomena, coherent Bremsstrahlung and parametric x-ray radiation.

The latter is determined by a coherent summation of transition radiation from. A novel X-ray source based on parametric X-ray radiation (PXR) has been employed for X-ray imaging at the Laboratory for Electron Beam Research and Application (LEBRA), Nihon University.

Notable features of PXR are tunable energy, monochromaticity with spatial chirp, narrow local bandwidth and spatial coherence. Parametric X-Rays and Diffraction of Transition Radiation in Mosaic Crystals.

@inproceedings{XavierParametricXA, title={Parametric X-Rays and Diffraction of Transition Radiation in Mosaic Crystals.}, author={Arulanantham Xavier and Rullhusen Peter}, year={} } Arulanantham Xavier, Rullhusen Peter.

Summary: "This systematic and comprehensive monograph is devoted to parametric X-ray radiation (PXR). This radiation is generated by the motion of electrons inside a crystal, whereby the emitted photons are diffracted by the crystal and the radiation intensity. Numerous applications of Mössbauer spectroscopy are related to a unique resolution of absorption spectra of resonant radiation in crystals, when the nucleus absorbs a photon without a recoil.

However, the narrow nuclear linewidth renders efficient driving of the nuclei challenging, restricting precision spectroscopy, nuclear inelastic scattering and nuclear quantum optics.

Moreover, the need. The current state of theoretical and experimental investigations of the parametric X-ray radiation (PXR) from relativistic charged particles in a crystal is briefly discussed.

Various mechanisms of X-radiation in the crystal are analyzed from the common point of view, based on. The principle features of the book are: basics of X-ray scattering, interaction between X-rays and matter and new theoretical concepts of X-ray scattering. The various X-ray techniques are considered in detail: high-resolution X-ray diffraction, X-ray reflectivity, grazing-incidence small-angle X-ray scattering and X-ray residual stress analysis.

A new scheme for generation of parametric x‐ray radiation without beam and crystal destruction is proposed. The beam of ultrarelativistic charged particles propagates in vacuum near the crystal surface while the photons are emitted under conditions of grazing incidence diffraction.

Spectral and angular properties of the radiation are calculated and restrictions on beam parameters are. The parametric X-ray radiation (PXR) is a new type of monochromatic, polarized, directed, tunable radiation arising in the vicinity of Bragg directions of a crystal when relativistic particles are passing through the crystal.

For the last ten years the PXR properties have been intensively investigated experimentally at moderate incident electron current.