<?xml version='1.0' encoding='utf-8'?>
<documents xmlns='http://eprints.org/ep2/data/2.0'>
  <document id='https://researchdata.bath.ac.uk/id/document/6882'>
    <docid>6882</docid>
    <rev_number>3</rev_number>
    <files>
      <file id='https://researchdata.bath.ac.uk/id/file/17816'>
        <fileid>17816</fileid>
        <datasetid>document</datasetid>
        <objectid>6882</objectid>
        <filename>Figure_3_b_on_off_resonance_absorption_spectra.csv</filename>
        <mime_type>text/plain</mime_type>
        <hash>053aa036e361f99e997809c699169184</hash>
        <hash_type>MD5</hash_type>
        <filesize>46620</filesize>
        <mtime>2017-09-07 15:52:19</mtime>
        <url>https://researchdata.bath.ac.uk/392/5/Figure_3_b_on_off_resonance_absorption_spectra.csv</url>
      </file>
    </files>
    <eprintid>392</eprintid>
    <pos>5</pos>
    <placement>5</placement>
    <mime_type>text/plain</mime_type>
    <format>other</format>
    <formatdesc>Figure_3_b_on_off_resonance_absorption_spectra.csv contains the transmission spectra across the whole pump spectrum, when on and off resonance measured by OSA at the end of fiber. The incident power is 40 dBm for both conditions.</formatdesc>
    <language>en</language>
    <security>public</security>
    <license>cc_by</license>
    <main>Figure_3_b_on_off_resonance_absorption_spectra.csv</main>
    <content>data</content>
  </document>
</documents>
