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Chip based common-path optical coherence tomography system with an on-chip microlens and multi-reference suppression algorithm

delete2016-06-01
delete13
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OA
AI
L
Lantian Chang *
N
Nicolás Weiss
T
Ton G. van Leeuwen
M
Markus Pollnau
R
R.M. de Ridder
K
Kerstin Wörhoff
V
Vinod Subramaniam
J
Johannes S. Kanger
DOI:10.1364/OE.24.012635delete
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Abstract

Abstract

En 中文
We demonstrate an integrated optical probe including an on-chip microlens for a common-path swept-source optical coherence tomography system. This common-path design uses the end facet of the silicon oxynitride waveguide as the reference plane, thus eliminating the need of a space-consuming and dispersive on-chip loop reference arm, thereby obviating the need for dispersion compensation. The on-chip micro-ball lens eliminates the need of external optical elements for coupling the light between the chip and the sample. The use of this lens leads to a signal enhancement up to 37 dB compared to the chip without a lens. The light source, the common-path arm and the detector are connected by a symmetric Y junction having a wavelength independent splitting ratio (50/50) over a much larger bandwidth than can be obtained with a directional coupler. The signal-to-noise ratio of the system was measured to be 71 dB with 2.6 mW of power on a mirror sample at a distance of 0.3 mm from the waveguide end facet. Cross-sectional OCT images of a layered optical phantom sample are demonstrated with our system. A method, based on an extended Fourier-domain OCT model, for suppressing ghost images caused by additional parasitic reference planes is experimentally demonstrated. (c) 2016 Optical Society of America
Keywords:
SWEPT-SOURCE
INTERFEROMETER
DECONVOLUTION
PERFORMANCE

Journal

Optics Express cover
Optics Express
IF:
3.3
Papers:
6.1W
Citations:
14.3W

Organization

A
academic medical center amsterdam
Scholars:
1.5W
Papers: 1.3W
Citations: 17
U
university of amsterdam
Scholars:
6.0W
Papers: 5.1W
Citations: 94
U
university of twente
Scholars:
1.5W
Papers: 1.4W
Citations: 9
R
Royal Institute of Technology
Scholars:
1.8W
Papers: 1.8W
Citations: 25
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