Serveur d'exploration sur le thulium

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Spectral hole burning in the trivalent thulium ion

Identifieur interne : 003493 ( Main/Curation ); précédent : 003492; suivant : 003494

Spectral hole burning in the trivalent thulium ion

Auteurs : R. M. Macfarlane [États-Unis]

Source :

RBID : Pascal:93-0475685

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English descriptors

Abstract

Spectral hole burning is reported for the trivalent thulium ion with measurements on the 3H6(1)↔3H4(1) transition of LaF3:Tm3+ and two sites (A and B) of CaF2:Tm3+ at 1.5 K. Hole burning occurs by population storage in the metastable 3F4 level. The holes were scanned by an electric-field ramp applied directly to the sample, the frequency being calibrated by burning multiple holes with a frequency-modulated laser

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Pascal:93-0475685

Le document en format XML

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H
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H
<sub>4</sub>
(1) transition of LaF
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F
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<div type="abstract" xml:lang="en">Spectral hole burning is reported for the trivalent thulium ion with measurements on the
<sup>3</sup>
H
<sub>6</sub>
(1)↔
<sup>3</sup>
H
<sub>4</sub>
(1) transition of LaF
<sub>3</sub>
:Tm
<sup>3+</sup>
and two sites (A and B) of CaF
<sub>2</sub>
:Tm
<sup>3+</sup>
at 1.5 K. Hole burning occurs by population storage in the metastable
<sup>3</sup>
F
<sub>4</sub>
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<div type="abstract" xml:lang="en">Spectral hole burning is reported for the trivalent thulium ion with measurements on the (3)H(6)(1) ? (3)H(4)(1) transition of LaF(3):Tm(3+) and two sites (A and B) of CaF(2):Tm(3+) at 1.5 K. Hole burning occurs by population storage in the metastable (3)F(4) level. The holes were scanned by an electric-field ramp applied directly to the sample, the frequency being calibrated by burning multiple holes with a frequency-modulated laser. This yielded the hole widths as well as the Stark coefficients for the transition studied, which are 8.3 kHz/V cm(-1) parallel to the C(2) axis (LaF(3):Tm(3+)) and for CaF(2):Tm(3+) are 25 kHz/V cm(-1) (site A), and 4.6 kHz/V cm(-1) (site B) for fields along the (001) direction. From the polarization behavior of the holes, the sites in CaF(2) are assigned to the F(-)-compensated C(4nu) and C(3nu) sites, respectively.</div>
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