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Schedule

Stanford Root

Schedule

APPPHYS 283

Ultrafast Quantum Physics (PHOTON 283)

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

Intended for first-year graduate students who are interested in understanding the basic concepts of ultrafast quantum science to prepare for research in AMO physics, condensed matter physics, physical chemistry or quantum information science.The topics in this course are distinct from and complementary to AP 201 (Laser and X-ray Sources and Science) and AP 203 (AMO Physics and Quantum Optics). Topics for this course: - Atomic structure probed in the time domain: Wave packets and quantum entanglement.- Molecular structure probed in the time domain: Building up and then breaking down the Born-Oppenheimer picture.- Extended quantum systems probed in the time domain: Band structure, phonons, and ultrafast disturbances- Laser-matter interactions: From multi-photon absorption to tunnel-ionization. - X-ray-matter interactions: Excitation, ionization, and linear and nonlinear scattering.- Attosecond science: Impulsive excitation, Auger-Meitner decay, charge migration within molecules.- Extreme time-domain quantum physics: high-field environments, and matter tunneling from the quantum vacuum.

Syllabus for selected term:
View Autumn 2026 Syllabus

Sections

1 Term
Lecture 1Open
ID: 12290
0 / 20 enrolled
DAYS:Tuesday, Thursday
TIME:9 AM – 10:20 AM
LOCATION:McCullough 126
INSTRUCTOR:
Bucksbaum, Philip
3units

APPPHYS 283: Ultrafast Quantum Physics (PHOTON 283)

3 units · Letter or Credit/No Credit

Intended for first-year graduate students who are interested in understanding the basic concepts of ultrafast quantum science to prepare for research in AMO physics, condensed matter physics, physical chemistry or quantum information science.The topics in this course are distinct from and complementary to AP 201 (Laser and X-ray Sources and Science) and AP 203 (AMO Physics and Quantum Optics). Topics for this course: - Atomic structure probed in the time domain: Wave packets and quantum entanglement.- Molecular structure probed in the time domain: Building up and then breaking down the Born-Oppenheimer picture.- Extended quantum systems probed in the time domain: Band structure, phonons, and ultrafast disturbances- Laser-matter interactions: From multi-photon absorption to tunnel-ionization. - X-ray-matter interactions: Excitation, ionization, and linear and nonlinear scattering.- Attosecond science: Impulsive excitation, Auger-Meitner decay, charge migration within molecules.- Extreme time-domain quantum physics: high-field environments, and matter tunneling from the quantum vacuum.

Offered in Autumn 2026 at Stanford University.

Autumn 2026 sections

  • Lecture — Tuesday Thursday 9:00 AM – 10:20 AM — McCullough 126 — Bucksbaum, Philip (Graduate)

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  • APPPHYS 273: Solid State Physics II
  • APPPHYS 280: Phenomenology of Superconductors
  • APPPHYS 282: ULTRACOLD QUANTUM PHYSICS (PHYSICS 182, PHYSICS 282)
  • APPPHYS 284: Introduction to Superconducting Circuits
  • APPPHYS 285: Physics of Disordered Systems
  • APPPHYS 290: Directed Studies in Applied Physics
  • APPPHYS 291: Curricular Practical Training
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