Silicon Phononic Crystal Directional Coupler: Design Framework, Feasibility Bounds, and Manufacturability Workflow (v1.0)

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1. Verfasser: Sosna, Lukas Andreas
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Sprache:Englisch
Veröffentlicht: Zenodo 2026
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_version_ 1866901628750135296
author Sosna, Lukas Andreas
author_facet Sosna, Lukas Andreas
contents <p>This repository accompanies a first-draft component paper on a silicon phononic crystal (PnC) directional coupler intended as a routing primitive for guided phononic modes. The release provides (i) the manuscript draft, (ii) reproducible analysis artifacts (data + figures) supporting coupling-curve extraction and manufacturability/yield diagnostics, and (iii) a design framework based on coupled-mode modeling and feasibility bounds.</p> <p>Important scope note (data provenance): the coupling-curve dataset data/gd_curve.csv included in this v1.0 release is explicitly labeled SYNTHETIC_DEMO_ONLY and is provided solely to validate the workflow, plotting, and tolerance/yield methodology. Geometry-specific coupling curves inferred from FEM eigenfrequency extraction (supermode splitting) are planned for a subsequent release and will replace the synthetic placeholder dataset.</p> <p>Note: This dataset is a supplement to a first-draft component manuscript . Code in this archive is additionally licensed under MIT (see <span>LICENSE-MIT.txt</span>). Data/figures/manuscript are CC BY 4.0.</p> <p> </p> <p> </p>
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spellingShingle Silicon Phononic Crystal Directional Coupler: Design Framework, Feasibility Bounds, and Manufacturability Workflow (v1.0)
Sosna, Lukas Andreas
Quantum optics
Optics and Photonics
phononics
phononic crystal
directional coupler
supermode splitting
coupled-mode theory
quantum acoustics
silicon
yield analysis
mechanical resonators
Physics
Physics
Condensed Matter Physics
Applied Physics
Engineering
Engineering
<p>This repository accompanies a first-draft component paper on a silicon phononic crystal (PnC) directional coupler intended as a routing primitive for guided phononic modes. The release provides (i) the manuscript draft, (ii) reproducible analysis artifacts (data + figures) supporting coupling-curve extraction and manufacturability/yield diagnostics, and (iii) a design framework based on coupled-mode modeling and feasibility bounds.</p> <p>Important scope note (data provenance): the coupling-curve dataset data/gd_curve.csv included in this v1.0 release is explicitly labeled SYNTHETIC_DEMO_ONLY and is provided solely to validate the workflow, plotting, and tolerance/yield methodology. Geometry-specific coupling curves inferred from FEM eigenfrequency extraction (supermode splitting) are planned for a subsequent release and will replace the synthetic placeholder dataset.</p> <p>Note: This dataset is a supplement to a first-draft component manuscript . Code in this archive is additionally licensed under MIT (see <span>LICENSE-MIT.txt</span>). Data/figures/manuscript are CC BY 4.0.</p> <p> </p> <p> </p>
title Silicon Phononic Crystal Directional Coupler: Design Framework, Feasibility Bounds, and Manufacturability Workflow (v1.0)
topic Quantum optics
Optics and Photonics
phononics
phononic crystal
directional coupler
supermode splitting
coupled-mode theory
quantum acoustics
silicon
yield analysis
mechanical resonators
Physics
Physics
Condensed Matter Physics
Applied Physics
Engineering
Engineering
url https://doi.org/10.5281/zenodo.18437760