Title of article
Pressure-induced modulation of the confinement in self-organized quantum dots produced and detected by a near-field optical probe
Author/Authors
A Chavez-Pirson، نويسنده , , Jiro Temmyo، نويسنده , , H Ando، نويسنده ,
Issue Information
دوهفته نامه با شماره پیاپی سال 2000
Pages
6
From page
367
To page
372
Abstract
Near-field optical probing, or nanoprobing, achieves spatial resolution that surpasses the diffraction limit of light and makes possible the luminescence imaging and spectroscopy of single quantum dots in dense arrays of dots. We use optical nanoprobing to study self-organized InGaAs quantum dots grown on View the MathML source oriented GaAs substrates. Here, we emphasize a new feature of nanoprobing: pressure-induced strain modulation near the surface. Operating in near-field optical excitation–collection mode, the probe makes contact with the surface and exerts direct pressure whose main effect is a compressive uniaxial strain under the probe. By adjusting the applied pressure, we modulate the local strain environment in and around a quantum dot, but still preserve the capability to capture its near-field luminescence. Nanoprobe pressure effects modify the confinement potential and radiative emission of single quantum dots, and the coupling strength between dots. This opens new possibilities for the study and control of the optical and electronic properties of single- and coupled-quantum dots.
Keywords
Quantum dots , Near-field optics , Pressure effects , Luminescence
Journal title
Physica E Low-dimensional Systems and Nanostructures
Serial Year
2000
Journal title
Physica E Low-dimensional Systems and Nanostructures
Record number
1049746
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