activity
20062008
most citedAn optical fiber-taper probe for wafer-scale microphotonic device characterization

113 citations · 239 across the 5 of their papers we have counts for

collaborators

5 papers

quant-ph200822 cited

Investigations of a coherently driven semiconductor optical cavity QED system

Kartik Srinivasan, Christopher P. Michael, Raviv Perahia +1

Chip-based cavity quantum electrodynamics (QED) devices consisting of a self-assembled InAs quantum dot (QD) coupled to a high quality factor GaAs microdisk cavity are coherently p…

cond-mat.mes-hall20071 cited

Geometric Suppression of Single-Particle Energy Spacings in Quantum Antidots

L. C. Bassett, C. P. Michael, C. J. B. Ford +4

Quantum Antidot (AD) structures have remarkable properties in the integer quantum Hall regime, exhibiting Coulomb-blockade charging and the Kondo effect despite their open geometry…

physics.optics200722 cited

Surface Encapsulation for Low-Loss Silicon Photonics

M. Borselli, T. J. Johnson, C. P. Michael +2

Encapsulation layers are explored for passivating the surfaces of silicon to reduce optical absorption in the 1500-nm wavelength band. Surface-sensitive test structures consisting…

physics.optics2007113 cited

An optical fiber-taper probe for wafer-scale microphotonic device characterization

C. P. Michael, M. Borselli, T. J. Johnson +2

A small depression is created in a straight optical fiber taper to form a local probe suitable for studying closely spaced, planar microphotonic devices. The tension of the "dimple…

physics.optics200681 cited

Wavelength- and material-dependent absorption in GaAs and AlGaAs microcavities

C. P. Michael, K. Srinivasan, T. J. Johnson +5

The quality factors of modes in nearly identical GaAs and Al_{0.18}Ga_{0.82}As microdisks are tracked over three wavelength ranges centered at 980 nm, 1460 nm, and 1600 nm, with qu…