Serveur d'exploration sur le thulium

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Optical investigation of nuclear spin coherence in Tm:YAG

Identifieur interne : 001362 ( Main/Exploration ); précédent : 001361; suivant : 001363

Optical investigation of nuclear spin coherence in Tm:YAG

Auteurs : A. Louchet [France] ; Y. Le Du [France] ; T. Brouri [France] ; F. Bretenaker [France] ; T. Chaneliere [France] ; F. Goldfarb [France] ; I. Lorgere [France] ; J.-L. Le Gouët [France]

Source :

RBID : Pascal:09-0032391

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English descriptors

Abstract

With all-optical means, the nuclear spin coherence lifetime is measured for the first time in a crystal doped with low-concentration thulium. A novel Raman echo scheme is demonstrated. The hyperfine splitting is varied over a 15 MHz-wide range with the help of an external magnetic field. Over this range the spin coherence lifetime remains close to 350 [is in the electronic ground state. Thulium-doped materials are proved to be interesting substitutes to other rare earth ion-doped crystals as quantum memory candidates, thanks to their convenient wavelength, their adjustable three-level system and their stable and long spin coherence lifetime.


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Le document en format XML

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<term>Aluminium oxide</term>
<term>Doped materials</term>
<term>Doping</term>
<term>Electron state</term>
<term>Electronic density of states</term>
<term>Electronic properties</term>
<term>Electronic structure</term>
<term>External fields</term>
<term>Ground states</term>
<term>Heterodyne detection</term>
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<term>Spin nucléaire</term>
<term>Addition thulium</term>
<term>Durée vie</term>
<term>Ordinateur quantique</term>
<term>Spectrométrie Raman</term>
<term>Décomposition hyperfine</term>
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<term>Grenat aluminium yttrium</term>
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<div type="abstract" xml:lang="en">With all-optical means, the nuclear spin coherence lifetime is measured for the first time in a crystal doped with low-concentration thulium. A novel Raman echo scheme is demonstrated. The hyperfine splitting is varied over a 15 MHz-wide range with the help of an external magnetic field. Over this range the spin coherence lifetime remains close to 350 [is in the electronic ground state. Thulium-doped materials are proved to be interesting substitutes to other rare earth ion-doped crystals as quantum memory candidates, thanks to their convenient wavelength, their adjustable three-level system and their stable and long spin coherence lifetime.</div>
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<name sortKey="Louchet, A" sort="Louchet, A" uniqKey="Louchet A" first="A." last="Louchet">A. Louchet</name>
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<name sortKey="Bretenaker, F" sort="Bretenaker, F" uniqKey="Bretenaker F" first="F." last="Bretenaker">F. Bretenaker</name>
<name sortKey="Brouri, T" sort="Brouri, T" uniqKey="Brouri T" first="T." last="Brouri">T. Brouri</name>
<name sortKey="Chaneliere, T" sort="Chaneliere, T" uniqKey="Chaneliere T" first="T." last="Chaneliere">T. Chaneliere</name>
<name sortKey="Goldfarb, F" sort="Goldfarb, F" uniqKey="Goldfarb F" first="F." last="Goldfarb">F. Goldfarb</name>
<name sortKey="Le Du, Y" sort="Le Du, Y" uniqKey="Le Du Y" first="Y." last="Le Du">Y. Le Du</name>
<name sortKey="Le Gouet, J L" sort="Le Gouet, J L" uniqKey="Le Gouet J" first="J.-L." last="Le Gouët">J.-L. Le Gouët</name>
<name sortKey="Lorgere, I" sort="Lorgere, I" uniqKey="Lorgere I" first="I." last="Lorgere">I. Lorgere</name>
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