Stanford Root

Schedule

Stanford Root

Schedule

APPPHYS 222

Principles of X-ray Scattering (PHOTON 222)

UNITS:4
GRADING:Letter or Credit/No Credit
LEVEL:Graduate
GER:—

Provides a fundamental understanding of x-ray scattering and diffraction. Combines pedagogy with modern experimental methods for obtaining atomic-scale structural information on synchrotron and free-electon laser-based facilities. Topics include Fourier transforms, reciprocal space; scattering in the first Born approximation, comparison of x-ray, neutron and electron interactions with matter, kinematic theory of diffraction; dynamical theory of diffraction from perfect crystals, crystal optics, diffuse scattering from imperfect crystals, inelastic x-ray scattering in time and space, x-ray photon correlation spectroscopy. Laboratory experiments at the Stanford Synchrotron Radiation Lightsource.

Syllabus for selected term:
View Spring 2027 Syllabus

Sections

1 Term
Lecture 1Open
ID: 12852
0 / 20 enrolled
DAYS:Tuesday, Thursday
TIME:10:30 AM – 11:50 AM
LOCATION:TBD
INSTRUCTOR:
Zhang, Leon, Reis, David, Hastings, Jerome
4units

APPPHYS 222: Principles of X-ray Scattering (PHOTON 222)

4 units · Letter or Credit/No Credit

Provides a fundamental understanding of x-ray scattering and diffraction. Combines pedagogy with modern experimental methods for obtaining atomic-scale structural information on synchrotron and free-electon laser-based facilities. Topics include Fourier transforms, reciprocal space; scattering in the first Born approximation, comparison of x-ray, neutron and electron interactions with matter, kinematic theory of diffraction; dynamical theory of diffraction from perfect crystals, crystal optics, diffuse scattering from imperfect crystals, inelastic x-ray scattering in time and space, x-ray photon correlation spectroscopy. Laboratory experiments at the Stanford Synchrotron Radiation Lightsource.

Offered in Spring 2027 at Stanford University.

Spring 2027 sections

  • Lecture — Tuesday Thursday 10:30 AM – 11:50 AM — Zhang, Leon, Reis, David, Hastings, Jerome (Graduate)

More APPPHYS courses

  • APPPHYS 203: Atoms, Fields and Photons
  • APPPHYS 204: Quantum Materials
  • APPPHYS 205: Introduction to Biophysics (BIO 126, BIO 226)
  • APPPHYS 207: Laboratory Electronics
  • APPPHYS 214: Experimental Methods for Quantum Materials
  • APPPHYS 220: Advanced Topics in Accelerator Physics
  • APPPHYS 223: Stochastic and Nonlinear Dynamics (BIO 223, BIOE 213, PHYSICS 223)
  • APPPHYS 228: Quantum Hardware
  • APPPHYS 229: Statistical Mechanics of Learning and Computation
  • APPPHYS 230: Renormalization Group and Randomness
  • APPPHYS 232: Advanced Imaging Lab in Biophysics (BIO 132, BIO 232, BIOE 232, BIOPHYS 232, GENE 232)
  • APPPHYS 235: Biotransport Phenomena (BIOE 235, BIOPHYS 235, ME 235)

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