Paper
25 April 2012 Single and coupled L3 photonic crystal cavities for cavity-QED experiments
Cristian Bonato, Jenna Hagemeier, Dario Gerace, Susanna M Thon, Hyochul Kim, Gareth Beirne, Morten Bakker, Lucio C. Andreani, Pierre M. Petroff, Martin P. van Exter, Dirk Bouwmeester
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Abstract
Here we discuss the experimental characterization of the spatial far-field profiles for the confined modes in a photonic crystal cavity of the L3 type, finding a good agreement with FDTD simulations. We then link the far-field profiles to relevant features of the cavity mode near-fields, using a simple Fabry-Perot resonator model. Finally, we describe a technique for independent all-electrical control of the wavelength of quantum dots in separated L3 cavities, coupled by a waveguide, by electrical isolation via proton implantation
© (2012) COPYRIGHT Society of Photo-Optical Instrumentation Engineers (SPIE). Downloading of the abstract is permitted for personal use only.
Cristian Bonato, Jenna Hagemeier, Dario Gerace, Susanna M Thon, Hyochul Kim, Gareth Beirne, Morten Bakker, Lucio C. Andreani, Pierre M. Petroff, Martin P. van Exter, and Dirk Bouwmeester "Single and coupled L3 photonic crystal cavities for cavity-QED experiments", Proc. SPIE 8425, Photonic Crystal Materials and Devices X, 84250C (25 April 2012); https://doi.org/10.1117/12.921643
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KEYWORDS
Quantum dots

Photonic crystals

Waveguides

Gallium arsenide

Near field

Fabry–Perot interferometers

Finite-difference time-domain method

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