Stanford University School of Humanities and Sciences

Department of Applied Physics

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Email:
pperron@stanford.edu
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Applied Physics Themes

  • Nanoscience and Quantum Engineering
  • Lasers and Accelerators
  • Condensed Matter Physics
  • Experimental and Theoretical Biophysics
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Spilker E+AS Bldg. 116-118
Online campus map
Phone:
(650) 723-4027
Email:
pperron@stanford.edu

All content under "Ginzton Laboratory"

Faculty

  • Benjamin Lev
  • Shanhui Fan
  • Jelena Vuckovic
  • Audrey K. Ellerbee
  • Raymond G. Beausoleil
  • Stephen E. Harris
  • David A. B. Miller
  • Michel Digonnet
  • Yoshihisa Yamamoto
  • Martin M. Fejer
  • Robert L. Byer
  • Olav Solgaard
  • Hideo Mabuchi

Courses

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Publications

  • Biaxial nematic phases in ultracold dipolar Fermi gases
  • Emergent crystallinity and frustration with Bose-Einstein condensates in multimode cavities
  • Dysprosium magneto-optical traps
  • Anisotropic sub-Doppler laser cooling in dysprosium magneto-optical traps
  • Dynamic polarizabilities and magic wavelengths for dysprosium
  • Spectroscopy of a narrow-line laser cooling transition in atomic dysprosium
  • Trapping ultracold dysprosium: A highly magnetic gas for dipolar physics
  • On perfect cloaking
  • Fundamental limit for optical components
  • Demonstration of Systematic Photonic Crystal Device Design and Optimization By Low Rank Adjustments: an Extremely Compact Mode Separator
  • Strong quantum-confined Stark effect in germanium quantum-well structures on silicon
  • C-band side-entry Ge quantum-well electroabsorption modulator on SOI operating at 1 V swing
  • Characteristic Impedance Model for Plasmonic Metal Slot Waveguides
  • Nanometre-Scale Germanium Photodetector Enhanced by a Near-Infrared Dipole Antenna
  • Plasmonic device in silicon CMOS
  • Device Requirements for Optical Interconnects to Silicon Chips
  • Ultra-fast Photonic Crystal Nanolasers
  • Coherent generation of nonclassical light on a chip via photon-induced tunneling and blockade
  • Controlling Cavity Reflectivity With a Single Quantum Dot
  • Controlled Phase Shifts with a Single Quantum Dot
  • Electrically pumped photonic crystal nanocavity light sources using a laterally doped p-i-n junction
  • Inverse design of nanophotonic structures using complementary convex optimization
  • Second harmonic generation in gallium phosphide photonic crystal nanocavities with ultralow continuous wave pump power
  • Photonic Quantum Technologies
  • Fast Electrical Control of a Quantum Dot Strongly Coupled to a Photonic Crystal Cavity
  • Resonant excitation of a quantum dot strongly coupled to a photonic crystal nanocavity
  • Multifunctional Tunable Optical Filter Using MEMS Spatial Light Modulator

More

  • AP Faculty Search
    The Department of Applied Physics has begun an ope ... more
  • PECASE Award: Benjamin Lev
    Please join us in congratulating Benjamin Lev on h ... more
  • MEMS two-photon microscope / Schnitzer and Solgaard Labs
    Mass of a MEMS two-photon microscope developed for ... more
  • Stanford Photonics Research Center
  • Edward L. Ginzton Laboratory
  • Center for Nanoscale Science and Engineering
    The Center for Nanoscale Science and Engineering h ... more
  • Optics and Electronics Seminar Series (AP483)
    Optics and Electronics Seminars are held in 232 Na ... more

Applied Physics Themes

  • Nanoscience and Quantum Engineering
  • Lasers and Accelerators
  • Condensed Matter Physics
  • Experimental and Theoretical Biophysics
  • Browse all topic tags

Navigate

  • Home
  • About/Contact
  • Faculty
  • Alumni
  • Academic Programs
  • Admissions
  • News & Events
  • Applied Physics Posts
Sign up for our email newsletter »

Contact Us

Visiting address: Spilker E+AS Bldg. 116-118 Map: Online campus map
Phone:
(650) 723-4027
Email:
pperron@stanford.edu

Mailing address: Department of Applied Physics 348 Via Pueblo Mall Stanford University Stanford, CA 94305-4090

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