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        <formatdesc>Figures repository for &quot;Parametric conversion via second harmonic generation and two-hump solitons in
phase-matched microresonators&quot; paper by V.V. Pankratov and D.V. Skryabin.  The archive includes all figures represented in the paper and the data used there.</formatdesc>
        <language>en</language>
        <security>public</security>
        <license>cc_by</license>
        <main>Figures_repository.zip</main>
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    <datestamp>2022-10-12 12:46:04</datestamp>
    <lastmod>2025-12-22 17:48:10</lastmod>
    <status_changed>2022-10-12 12:46:04</status_changed>
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    <creators>
      <item>
        <name>
          <family>Pankratov</family>
          <given>Vladislav</given>
        </name>
        <id>vp472@bath.ac.uk</id>
        <orcid>0000-0003-2669-9887</orcid>
        <affiliation>University of Bath</affiliation>
        <contact>TRUE</contact>
      </item>
      <item>
        <name>
          <family>Skryabin</family>
          <given>Dmitry</given>
        </name>
        <id>D.V.Skryabin@bath.ac.uk</id>
        <orcid>0000-0001-5038-2500</orcid>
        <affiliation>University of Bath</affiliation>
        <contact>FALSE</contact>
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    <title>Dataset for &quot;Parametric conversion via second harmonic generation and two-hump solitons in phase-matched microresonators&quot;</title>
    <divisions>
      <item>dept_physics</item>
    </divisions>
    <keywords>Physics, nonlinear optics, photonics, microresonators, frequency combs, solitons, Turing patterns</keywords>
    <abstract>The present dataset includes all figures (.fig and .png versions) represented in the &quot;Parametric conversion via second harmonic generation and two-hump solitons in phase-matched microresonators&quot; paper and the data used there. The most valuable part of the dataset is dynamics simulation described in the paper, showing the appearance of Turing-pattern-like states and solitons in the chi2 microring resonator.</abstract>
    <date>2022-10-12</date>
    <publisher>University of Bath</publisher>
    <full_text_status>public</full_text_status>
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      <item>
        <funder_name>Horizon 2020 Framework Programme</funder_name>
        <funder_id>https://doi.org/10.13039/100010661</funder_id>
        <grant_id>812818</grant_id>
        <project_name>MICROresonator frequency COMBs: Fundamentals and Applications</project_name>
      </item>
    </funding>
    <research_centres>
      <item>cent_photon</item>
    </research_centres>
    <collection_method>Full details of the methodology may be found in the section II &apos;Model&apos; of the associated paper.</collection_method>
    <techinfo>All simulations were performed with MATLAB software. Simulation parameters could be found in the section I of the associated paper.</techinfo>
    <methodurl>
      <item>https://doi.org/10.48550/arXiv.2210.07092</item>
    </methodurl>
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    <version>1</version>
    <doi>10.15125/BATH-01201</doi>
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        <link>https://doi.org/10.1103/PhysRevA.106.043510</link>
        <type>pub</type>
      </item>
    </related_resources>
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      <item>open</item>
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    <access_arrangements>Openly available for download</access_arrangements>
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