Journal article Open Access

Dispersive coupling between light and a rare-earth-ion–doped mechanical resonator

Klaus Mølmer; Yann Le Coq; Signe Seidelin


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        <foaf:name>Klaus Mølmer</foaf:name>
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        <foaf:name>Yann Le Coq</foaf:name>
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    <dct:title>Dispersive coupling between light and a rare-earth-ion–doped mechanical resonator</dct:title>
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    <dcat:keyword>Nano-scale technology, optics, rare-earth doped crystals, optomechanics, nano-resonators, strain-coupling</dcat:keyword>
    <dcat:keyword>Rare-earth</dcat:keyword>
    <dcat:keyword>Quantum Technologies</dcat:keyword>
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    <dct:description>&lt;p&gt;By spectrally hole burning an inhomogeneously broadened ensemble of ions while applying a controlled&lt;br&gt; perturbation, one can obtain spectral holes that are functionalized for maximum sensitivity to different&lt;br&gt; perturbations. We propose to use such hole-burned structures for the dispersive optical interaction with&lt;br&gt; rare-earth-ion dopants whose frequencies are sensitive to crystal strain due to the bending motion of a crystal&lt;br&gt; cantilever. A quantitative analysis shows that good optical sensitivity to the bending motion is obtained if a&lt;br&gt; magnetic-field gradient is applied across the crystal during hole burning and that the resulting optomechanical&lt;br&gt; coupling strength is sufficient for observing quantum features such as zero-point vibrations.&lt;/p&gt;</dct:description>
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