Serveur d'exploration sur le thulium

Attention, ce site est en cours de développement !
Attention, site généré par des moyens informatiques à partir de corpus bruts.
Les informations ne sont donc pas validées.

Spectral hole burning in thulium-doped glass ceramics

Identifieur interne : 000D97 ( Pascal/Curation ); précédent : 000D96; suivant : 000D98

Spectral hole burning in thulium-doped glass ceramics

Auteurs : Roger M. Macfarlane [États-Unis] ; Matthew J. Dejneka [États-Unis]

Source :

RBID : Pascal:01-0346206

Descripteurs français

English descriptors

Abstract

We have used spectral hole burning to measure the homogeneous linewidth of the 3H6(1)-3F3(1) transition of Tm3+ ions doped into oxyfluoride glass ceramics consisting of nanocrystals of LaF3 in an aluminosilicate glass matrix. From the magnitude of the hole width in the nanocrystals and its dependence on temperature, we propose that excitation of tunneling modes in the adjacent glassy phase as well as of confined mechanical modes in the nanocrystals is responsible for the broadening. © 2001 Optical Society of America
pA  
A01 01  1    @0 0146-9592
A02 01      @0 OPLEDP
A03   1    @0 Opt. lett.
A05       @2 26
A06       @2 7
A08 01  1  ENG  @1 Spectral hole burning in thulium-doped glass ceramics
A11 01  1    @1 MACFARLANE (Roger M.)
A11 02  1    @1 DEJNEKA (Matthew J.)
A14 01      @1 IBM Almaden Research Center, San Jose, California 95120 @Z 1 aut. @Z 2 aut.
A14 02      @1 Corning, Inc., Corning, New York 18431
A20       @1 429-431
A21       @1 2001-04-01
A23 01      @0 ENG
A43 01      @1 INIST @2 17775
A44       @0 8100 @1 © 2001 American Institute of Physics. All rights reserved.
A47 01  1    @0 01-0346206
A60       @1 P
A61       @0 A
A64 01  1    @0 Optics letters
A66 01      @0 USA
C01 01    ENG  @0 We have used spectral hole burning to measure the homogeneous linewidth of the 3H6(1)-3F3(1) transition of Tm3+ ions doped into oxyfluoride glass ceramics consisting of nanocrystals of LaF3 in an aluminosilicate glass matrix. From the magnitude of the hole width in the nanocrystals and its dependence on temperature, we propose that excitation of tunneling modes in the adjacent glassy phase as well as of confined mechanical modes in the nanocrystals is responsible for the broadening. © 2001 Optical Society of America
C02 01  3    @0 001B40B70C
C02 02  3    @0 001B70H40P
C03 01  3  FRE  @0 4270C @2 PAC @4 INC
C03 02  3  FRE  @0 7840P @2 PAC @4 INC
C03 03  3  FRE  @0 Etude expérimentale
C03 03  3  ENG  @0 Experimental study
C03 04  3  FRE  @0 Vitrocéramique
C03 04  3  ENG  @0 Glass ceramics
C03 05  3  FRE  @0 Thulium @2 NC
C03 05  3  ENG  @0 Thulium @2 NC
C03 06  3  FRE  @0 Hole burning optique
C03 06  3  ENG  @0 Optical hole burning
C03 07  3  FRE  @0 Cristallite
C03 07  3  ENG  @0 Crystallites
C03 08  3  FRE  @0 Elargissement raie
C03 08  3  ENG  @0 Line broadening
C03 09  3  FRE  @0 Spectre visible
C03 09  3  ENG  @0 Visible spectra
N21       @1 246
N47 01  1    @0 0135M000532

Links toward previous steps (curation, corpus...)


Links to Exploration step

Pascal:01-0346206

Le document en format XML

<record>
<TEI>
<teiHeader>
<fileDesc>
<titleStmt>
<title xml:lang="en" level="a">Spectral hole burning in thulium-doped glass ceramics</title>
<author>
<name sortKey="Macfarlane, Roger M" sort="Macfarlane, Roger M" uniqKey="Macfarlane R" first="Roger M." last="Macfarlane">Roger M. Macfarlane</name>
<affiliation wicri:level="2">
<inist:fA14 i1="01">
<s1>IBM Almaden Research Center, San Jose, California 95120</s1>
<sZ>1 aut.</sZ>
<sZ>2 aut.</sZ>
</inist:fA14>
<country xml:lang="fr">États-Unis</country>
<placeName>
<region type="state">Californie</region>
</placeName>
<wicri:cityArea>IBM Almaden Research Center, San Jose</wicri:cityArea>
</affiliation>
<affiliation wicri:level="2">
<inist:fA14 i1="02">
<s1>Corning, Inc., Corning, New York 18431</s1>
</inist:fA14>
<country xml:lang="fr">États-Unis</country>
<placeName>
<region type="state">État de New York</region>
</placeName>
<wicri:cityArea>Corning, Inc., Corning</wicri:cityArea>
</affiliation>
</author>
<author>
<name sortKey="Dejneka, Matthew J" sort="Dejneka, Matthew J" uniqKey="Dejneka M" first="Matthew J." last="Dejneka">Matthew J. Dejneka</name>
<affiliation wicri:level="2">
<inist:fA14 i1="01">
<s1>IBM Almaden Research Center, San Jose, California 95120</s1>
<sZ>1 aut.</sZ>
<sZ>2 aut.</sZ>
</inist:fA14>
<country xml:lang="fr">États-Unis</country>
<placeName>
<region type="state">Californie</region>
</placeName>
<wicri:cityArea>IBM Almaden Research Center, San Jose</wicri:cityArea>
</affiliation>
</author>
</titleStmt>
<publicationStmt>
<idno type="wicri:source">INIST</idno>
<idno type="inist">01-0346206</idno>
<date when="2001-04-01">2001-04-01</date>
<idno type="stanalyst">PASCAL 01-0346206 AIP</idno>
<idno type="RBID">Pascal:01-0346206</idno>
<idno type="wicri:Area/Pascal/Corpus">000D97</idno>
<idno type="wicri:Area/Pascal/Curation">000D97</idno>
</publicationStmt>
<sourceDesc>
<biblStruct>
<analytic>
<title xml:lang="en" level="a">Spectral hole burning in thulium-doped glass ceramics</title>
<author>
<name sortKey="Macfarlane, Roger M" sort="Macfarlane, Roger M" uniqKey="Macfarlane R" first="Roger M." last="Macfarlane">Roger M. Macfarlane</name>
<affiliation wicri:level="2">
<inist:fA14 i1="01">
<s1>IBM Almaden Research Center, San Jose, California 95120</s1>
<sZ>1 aut.</sZ>
<sZ>2 aut.</sZ>
</inist:fA14>
<country xml:lang="fr">États-Unis</country>
<placeName>
<region type="state">Californie</region>
</placeName>
<wicri:cityArea>IBM Almaden Research Center, San Jose</wicri:cityArea>
</affiliation>
<affiliation wicri:level="2">
<inist:fA14 i1="02">
<s1>Corning, Inc., Corning, New York 18431</s1>
</inist:fA14>
<country xml:lang="fr">États-Unis</country>
<placeName>
<region type="state">État de New York</region>
</placeName>
<wicri:cityArea>Corning, Inc., Corning</wicri:cityArea>
</affiliation>
</author>
<author>
<name sortKey="Dejneka, Matthew J" sort="Dejneka, Matthew J" uniqKey="Dejneka M" first="Matthew J." last="Dejneka">Matthew J. Dejneka</name>
<affiliation wicri:level="2">
<inist:fA14 i1="01">
<s1>IBM Almaden Research Center, San Jose, California 95120</s1>
<sZ>1 aut.</sZ>
<sZ>2 aut.</sZ>
</inist:fA14>
<country xml:lang="fr">États-Unis</country>
<placeName>
<region type="state">Californie</region>
</placeName>
<wicri:cityArea>IBM Almaden Research Center, San Jose</wicri:cityArea>
</affiliation>
</author>
</analytic>
<series>
<title level="j" type="main">Optics letters</title>
<title level="j" type="abbreviated">Opt. lett.</title>
<idno type="ISSN">0146-9592</idno>
<imprint>
<date when="2001-04-01">2001-04-01</date>
</imprint>
</series>
</biblStruct>
</sourceDesc>
<seriesStmt>
<title level="j" type="main">Optics letters</title>
<title level="j" type="abbreviated">Opt. lett.</title>
<idno type="ISSN">0146-9592</idno>
</seriesStmt>
</fileDesc>
<profileDesc>
<textClass>
<keywords scheme="KwdEn" xml:lang="en">
<term>Crystallites</term>
<term>Experimental study</term>
<term>Glass ceramics</term>
<term>Line broadening</term>
<term>Optical hole burning</term>
<term>Thulium</term>
<term>Visible spectra</term>
</keywords>
<keywords scheme="Pascal" xml:lang="fr">
<term>4270C</term>
<term>7840P</term>
<term>Etude expérimentale</term>
<term>Vitrocéramique</term>
<term>Thulium</term>
<term>Hole burning optique</term>
<term>Cristallite</term>
<term>Elargissement raie</term>
<term>Spectre visible</term>
</keywords>
</textClass>
</profileDesc>
</teiHeader>
<front>
<div type="abstract" xml:lang="en">We have used spectral hole burning to measure the homogeneous linewidth of the
<sup>3</sup>
H
<sub>6</sub>
(1)-
<sup>3</sup>
F
<sub>3</sub>
(1) transition of Tm
<sup>3+</sup>
ions doped into oxyfluoride glass ceramics consisting of nanocrystals of LaF
<sub>3</sub>
in an aluminosilicate glass matrix. From the magnitude of the hole width in the nanocrystals and its dependence on temperature, we propose that excitation of tunneling modes in the adjacent glassy phase as well as of confined mechanical modes in the nanocrystals is responsible for the broadening. © 2001 Optical Society of America</div>
</front>
</TEI>
<inist>
<standard h6="B">
<pA>
<fA01 i1="01" i2="1">
<s0>0146-9592</s0>
</fA01>
<fA02 i1="01">
<s0>OPLEDP</s0>
</fA02>
<fA03 i2="1">
<s0>Opt. lett.</s0>
</fA03>
<fA05>
<s2>26</s2>
</fA05>
<fA06>
<s2>7</s2>
</fA06>
<fA08 i1="01" i2="1" l="ENG">
<s1>Spectral hole burning in thulium-doped glass ceramics</s1>
</fA08>
<fA11 i1="01" i2="1">
<s1>MACFARLANE (Roger M.)</s1>
</fA11>
<fA11 i1="02" i2="1">
<s1>DEJNEKA (Matthew J.)</s1>
</fA11>
<fA14 i1="01">
<s1>IBM Almaden Research Center, San Jose, California 95120</s1>
<sZ>1 aut.</sZ>
<sZ>2 aut.</sZ>
</fA14>
<fA14 i1="02">
<s1>Corning, Inc., Corning, New York 18431</s1>
</fA14>
<fA20>
<s1>429-431</s1>
</fA20>
<fA21>
<s1>2001-04-01</s1>
</fA21>
<fA23 i1="01">
<s0>ENG</s0>
</fA23>
<fA43 i1="01">
<s1>INIST</s1>
<s2>17775</s2>
</fA43>
<fA44>
<s0>8100</s0>
<s1>© 2001 American Institute of Physics. All rights reserved.</s1>
</fA44>
<fA47 i1="01" i2="1">
<s0>01-0346206</s0>
</fA47>
<fA60>
<s1>P</s1>
</fA60>
<fA61>
<s0>A</s0>
</fA61>
<fA64 i1="01" i2="1">
<s0>Optics letters</s0>
</fA64>
<fA66 i1="01">
<s0>USA</s0>
</fA66>
<fC01 i1="01" l="ENG">
<s0>We have used spectral hole burning to measure the homogeneous linewidth of the
<sup>3</sup>
H
<sub>6</sub>
(1)-
<sup>3</sup>
F
<sub>3</sub>
(1) transition of Tm
<sup>3+</sup>
ions doped into oxyfluoride glass ceramics consisting of nanocrystals of LaF
<sub>3</sub>
in an aluminosilicate glass matrix. From the magnitude of the hole width in the nanocrystals and its dependence on temperature, we propose that excitation of tunneling modes in the adjacent glassy phase as well as of confined mechanical modes in the nanocrystals is responsible for the broadening. © 2001 Optical Society of America</s0>
</fC01>
<fC02 i1="01" i2="3">
<s0>001B40B70C</s0>
</fC02>
<fC02 i1="02" i2="3">
<s0>001B70H40P</s0>
</fC02>
<fC03 i1="01" i2="3" l="FRE">
<s0>4270C</s0>
<s2>PAC</s2>
<s4>INC</s4>
</fC03>
<fC03 i1="02" i2="3" l="FRE">
<s0>7840P</s0>
<s2>PAC</s2>
<s4>INC</s4>
</fC03>
<fC03 i1="03" i2="3" l="FRE">
<s0>Etude expérimentale</s0>
</fC03>
<fC03 i1="03" i2="3" l="ENG">
<s0>Experimental study</s0>
</fC03>
<fC03 i1="04" i2="3" l="FRE">
<s0>Vitrocéramique</s0>
</fC03>
<fC03 i1="04" i2="3" l="ENG">
<s0>Glass ceramics</s0>
</fC03>
<fC03 i1="05" i2="3" l="FRE">
<s0>Thulium</s0>
<s2>NC</s2>
</fC03>
<fC03 i1="05" i2="3" l="ENG">
<s0>Thulium</s0>
<s2>NC</s2>
</fC03>
<fC03 i1="06" i2="3" l="FRE">
<s0>Hole burning optique</s0>
</fC03>
<fC03 i1="06" i2="3" l="ENG">
<s0>Optical hole burning</s0>
</fC03>
<fC03 i1="07" i2="3" l="FRE">
<s0>Cristallite</s0>
</fC03>
<fC03 i1="07" i2="3" l="ENG">
<s0>Crystallites</s0>
</fC03>
<fC03 i1="08" i2="3" l="FRE">
<s0>Elargissement raie</s0>
</fC03>
<fC03 i1="08" i2="3" l="ENG">
<s0>Line broadening</s0>
</fC03>
<fC03 i1="09" i2="3" l="FRE">
<s0>Spectre visible</s0>
</fC03>
<fC03 i1="09" i2="3" l="ENG">
<s0>Visible spectra</s0>
</fC03>
<fN21>
<s1>246</s1>
</fN21>
<fN47 i1="01" i2="1">
<s0>0135M000532</s0>
</fN47>
</pA>
</standard>
</inist>
</record>

Pour manipuler ce document sous Unix (Dilib)

EXPLOR_STEP=$WICRI_ROOT/Wicri/Terre/explor/ThuliumV1/Data/Pascal/Curation
HfdSelect -h $EXPLOR_STEP/biblio.hfd -nk 000D97 | SxmlIndent | more

Ou

HfdSelect -h $EXPLOR_AREA/Data/Pascal/Curation/biblio.hfd -nk 000D97 | SxmlIndent | more

Pour mettre un lien sur cette page dans le réseau Wicri

{{Explor lien
   |wiki=    Wicri/Terre
   |area=    ThuliumV1
   |flux=    Pascal
   |étape=   Curation
   |type=    RBID
   |clé=     Pascal:01-0346206
   |texte=   Spectral hole burning in thulium-doped glass ceramics
}}

Wicri

This area was generated with Dilib version V0.6.21.
Data generation: Thu May 12 08:27:09 2016. Site generation: Thu Mar 7 22:33:44 2024