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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 "Quantum Engineering"

Faculty

  • Xiao-Liang Qi
  • Hari Manoharan
  • Jelena Vuckovic
  • David Goldhaber-Gordon
  • Raymond G. Beausoleil
  • Stephen E. Harris
  • David A. B. Miller
  • Yoshihisa Yamamoto
  • Kathryn A. Moler
  • Hideo Mabuchi

Courses

  • Atom-based computational methods for materials
  • Atomic Arrangements in Solids
  • Laser Cooling and Trapping
  • Laser Spectroscopy
  • Solar Cells
  • Solid State Physics and the Energy Challenge
  • Guided Wave Optical Devices
  • Nanophotonics
  • Applied Quantum Mechanics II
  • Applied Quantum Mechanics I
  • Electrons in Nanostructures
  • Optical micro- and nano-cavities
  • Introduction to Nanophotonics and Nanostructures
  • Quantum Optics and Measurements
  • Literature of Cavity Quantum Electrodynamics
  • Quantum Device Physics of Atomic and Semiconductor Systems
  • Probability and Quantum Mechanics
  • Estimation and Control Methods for Applied Physics

Publications

  • Sensing with Slow Light in Fiber Bragg Gratings
  • Performance comparison of slow-light coupled-resonator optical gyroscopes
  • Control of retinal isomerization in bacteriorhodopsin in the high-intensity regime
  • Methods of Single-Molecule Fluorescence Spectroscopy and Microscopy
  • New Directions in Single-Molecule Imaging and Analysis
  • Single spin detection by magnetic resonance force microscopy
  • Feedback cooling of a cantilever’s fundamental mode below 5 mK
  • Nanoscale magnetic resonance imaging
  • Large Gap Topological Insulator Bi2Te3 with a Single Dirac Cone on the Surface
  • Superconductor-to-Metal Transitions in Dissipative Chains of Mesoscopic Grains and Nanowires
  • Strongly correlated two-photon transport in a one-dimensional waveguide coupled to a two-level atom
  • One-way electromagnetic waveguide formed at the interface between a plasmonic metal under static magnetic field and a photonic crystal
  • Three-dimensional meta-material with an ultra-high refractive index over broad bandwidth
  • Deep-subwavelength focusing and steering of light in an aperiodic metallic waveguide array
  • Complete optical isolation created by indirect interband photonic transitions
  • Single-molecule fluorescence enhancements produced by a Bowtie nanoantenna
  • Photonic band structure of dispersive meta-materials formulated as a Hermitian eigenvalue problem
  • Super-scattering of light from sub-wavelength nano-structures
  • Fundamental limit of nanophotonic light trapping in solar cells
  • Coherent Population Trapping of Single Spins in Diamond under Optical Excitation
  • Nanoelectronic and Nanophotonic Interconnect
  • Silicon microring resonators with 1.5-µm radius
  • Devices and architectures for photonic chip-scale integration
  • Hybrid photonic crystal cavity and waveguide for coupling to diamond NV-centers
  • Electrically-pumped compact hybrid silicon microring lasers for optical interconnects
  • Observation of the Dynamic Jahn-Teller Effect in the Excited States of Nitrogen-Vacancy Centers in Diamond
  • Conversion of neutral nitrogen-vacancy centers to negatively charged nitrogen-vacancy centers through selective oxidation
  • Flat Dielectric Grating Reflectors with Focusing Abilities
  • Nanophotonics for Quantum Optics Using Nitrogen-Vacancy Centers in Diamond
  • 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
  • Universal scaling in nonequilibrium transport through a single channel Kondo dot
  • Virtual scanning tunneling microscopy: A local spectroscopic probe of two-dimensional electron systems
  • 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
  • Indistinguishable Photons from a Single-Photon Device
  • Condensation of Semiconductor Microcavity Exciton Polaritons
  • A gallium nitride single-photon source operating at 200 K
  • Quantum key distribution over 40 dB channel loss using superconducting single photon detectors
  • Coherent zero-state and π-state in an exciton-polariton condensate array
  • Ultrafast control of donor-bound electron spins with single detuned optical pulses
  • Complete quantum control of a single quantum dot spin using ultrafast optical pulses
  • Ultrafast Optical Spin Echo in a Single Quantum Dot
  • Generation and Compression of Chirped Biphotons
  • Hiding Single Photons with Spread Spectrum Technology
  • Observation of Nonlocal Modulation with Entangled Photons
  • Electro-Optic Modulation of Single Photons
  • Nonlocal Modulation of Entangled Photons
  • Subnatural Linewidth Biphotons with Controllable Temporal Length
  • Towards Single-Cycle Biphotons
  • Chirp and Compress: Toward Single-Cycle Biphotons
  • Low-lying bifurcations in cavity quantum electrodynamics
  • Coherent-feedback quantum control with a dynamic compensator
  • Derivation of Maxwell-Bloch-type equations by projection of quantum models
  • Quantum filter reduction for measurement-feedback control via unsupervised manifold learning
  • Van der Waals enhancement of optical atom potentials via resonant coupling to surface polaritons
  • Cavity-QED models of switches for attojoule-scale nanophotonic logic
  • Designing quantum memories with embedded control: photonic circuits for autonomous quantum error correction
  • The dressed atom as binary phase modulator: towards attojoule/edge optical phase-shift keying

More

  • Pelc, Jason
  • AP Faculty Search
    The Department of Applied Physics has begun an ope ... more
  • Lee, Jongmin
  • New Faculty: Yuri Suzuki and Benjamin Lev
    Yuri Suzuki, whose research deals broadly in the s ... more
  • Jun, Young Chul
  • Optics and Electronics Seminars
    The Optics and Electronics Seminar series, also kn ... more
  • Kim, Na Young
  • Faraon, Andrei
  • Jura, Michael
  • Zeltzer, Gabriel
  • Ladd, Thaddeus D.
  • Yu, Zongfu
  • Press, David
    David Press is currently working to make low-cost, ... more
  • Cizek, Nick
    ARPA-E is a new agency within the Dept. of Energy ... more
  • Ultrafast spin control in a single quantum dot / Yamamoto
    gates per decoherence time in ultrafast optical co ... more
  • Retinal isomerization control / Bucksbaum
    photons per sq cm in high-intensity quantum contro ... more
  • Attojoule phase-shift keying / Mabuchi Lab
    Energy dissipation per edge, in spontaneous binary ... more
  • PULSE Institute for Ultrafast Energy Science
  • Stanford Photonics Research Center
  • LISA strain sensitivity
    target strain sensitivity (near 0.006 Hz, for dete ... more
  • 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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