Publication: On-chip arbitrary dispersion engineering with deep photonic networks
Program
KU-Authors
KU Authors
Co-Authors
Gorgulu, K.
Vit, A. D.
Amiri, A. N.
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Date
Language
eng
Type
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N/A
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Abstract
We demonstrate the design and optimization of on-chip arbitrary dispersion profiles using deep photonic networks constructed from custom-designed Mach–Zehnder interferometers (MZIs). These photonic networks employ optimizable waveguide tapers, enabling precise engineering of wavelength-dependent dispersion profiles. We experimentally demonstrate a proof-of-concept two-port photonic network that exhibits a highly nonintuitive triangular dispersion profile over the wavelength range of 1.54 μm–1.58 μm while simultaneously achieving a flatband transmission with an insertion loss of less than 0.7 dB. We also illustrate the potential of multi-port photonic networks to enhance design freedom for more complex and customizable dispersion profiles, enabling new possibilities for on-chip dispersion engineering.
Source
Publisher
Optica Publishing Group
Subject
Physical sciences, Engineering, Optics
Citation
Has Part
Source
Optics Letters
Book Series Title
Edition
DOI
10.1364/ol.564441
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Creative Commons license
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