Stanford Root

Schedule

Stanford Root

Schedule

PHOTON 384

Advanced Topics in AMO Physics (APPPHYS 384)

UNITS:3
GRADING:Letter or Credit/No Credit
LEVEL:Graduate
GER:—

This course will develop the subject of Strong-Field QED. Topics to be covered include: The structure of the quantum vacuum;relativistic laser-vacuum interactions;linear and non-linear Compton and Breit-Wheeler pair-production processes;vacuum polarization and vacuum tunneling; the radiation reaction problem in strong fields;applications in astrophysics and cosmology. The course will also cover experimental methods, including petawatt lasers with focused intensities sufficient to destabilize the vacuum. Prerequisites: familiarity with quantum mechanics, electrodynamics, and special relativity.

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PHOTON 384: Advanced Topics in AMO Physics (APPPHYS 384)

3 units · Letter or Credit/No Credit

This course will develop the subject of Strong-Field QED. Topics to be covered include: The structure of the quantum vacuum;relativistic laser-vacuum interactions;linear and non-linear Compton and Breit-Wheeler pair-production processes;vacuum polarization and vacuum tunneling; the radiation reaction problem in strong fields;applications in astrophysics and cosmology. The course will also cover experimental methods, including petawatt lasers with focused intensities sufficient to destabilize the vacuum. Prerequisites: familiarity with quantum mechanics, electrodynamics, and special relativity.

More PHOTON courses

  • PHOTON 172: X-Ray Diffraction Laboratory (MATSCI 162, MATSCI 172)
  • PHOTON 201: Electrons and Photons (APPPHYS 201)
  • PHOTON 205: Waves and Diffraction in Solids (MATSCI 195, MATSCI 205)
  • PHOTON 222: Principles of X-ray Scattering (APPPHYS 222)
  • PHOTON 283: Ultrafast Quantum Physics (APPPHYS 283)
  • PHOTON 322: Advanced Topics in X-ray Scattering (APPPHYS 322)
  • PHOTON 323: Introduction to Accelerator Physics (APPPHYS 324)
  • PHOTON 324: Optics of Microscope Design for Materials (MATSCI 324)
  • PHOTON 325: Synchrotron Radiation and Free Electron Lasers: Principles and Applications. (APPPHYS 325)
  • PHOTON 329: The Electronic Structure of Surfaces and Interfaces (EE 329)
  • PHOTON 345: Fundamentals and Applications of Spectroscopy (CHEMENG 345)
  • PHOTON 366: Light and Plasma (ME 366)

All PHOTON courses · All departments