31:
908:
77:
In the 1990s, new forms of improved PMMA, such as modified PMMA, with high optical quality characteristics were introduced. Gain media research for SSDL has been rather active in the 21st century, and various new dye-doped solid-state organic matrices have been discovered. Notable among these new
433:
Duarte, F. J.; James, R. O. (2009). "Tunable lasers based on dye-doped polymer gain media incorporating homogeneous distributions of functional nanoparticles". In Duarte, F. J. (ed.).
1175:
146:
680:
Oki, Y.; Miyamoto, S.; Tanaka, M.; Zuo, D.; Maeda, M. (2002). "Long lifetime and high repetition rate operation from distributed feedback plastic waveguided dye lasers".
123:
78:
gain media are organic-inorganic dye-doped polymer-nanoparticle composites. An additional form of organic-inorganic dye-doped solid-state laser gain media are the
295:
Maslyukov, A.; Sokolov, S.; Kaivola, M.; Nyholm, K.; Popov, S. (1995). "Solid-state dye laser with modified poly(methyl methacrylate)-doped active elements".
217:
Duarte, F. J.; Taylor, T. S.; Costela, A.; Garcia-Moreno, I.; Sastre, R. (1998). "Long-pulse narrow-linewidth dispersive solid-state dye laser oscillator".
897:
594:
Wadsworth, W. J.; McKinnie, I. T.; Woolhouse, A. D.; Haskell, T. G. (1999). "Efficient distributed feedback solid state dye laser with a dynamic grating".
1056:
91:
197:
149:
1074:
578:
450:
414:
98:, which were later optimized to deliver pulse emission in the kW regime in nearly diffraction limited beams with single-longitudinal-mode
733:
337:
A. J. C. Kuehne and M. C. Gather, Organic Lasers: Recent
Developments on Materials, Device Geometries, and Fabrication Techniques,
153:
1210:
890:
1132:
30:
354:
Duarte, F. J.; James, R. O. (2003). "Tunable solid-state lasers incorporating dye-doped polymer-nanoparticle gain media".
1261:
883:
165:
976:
90:
This improved gain medium was central to the demonstration of the first tunable narrow-linewidth solid-state dye
55:
1050:
931:
1240:
726:
1033:
518:
Duarte, F. J. (1999). "Multiple-prism grating solid-state dye laser oscillator: optimized architecture".
1064:
830:
689:
646:
603:
527:
481:
397:
Costela, A.; Garcia-Moreno, I.; Sastre, R. (2009). "Solid state dye lasers". In Duarte, F. J. (ed.).
363:
304:
269:
226:
128:
1027:
847:
719:
619:
105:
1215:
764:
260:
Soffer, B. H.; McFarland, B. B. (1967). "Continuously
Tunable, Narrow-Band Organic Dye Lasers".
1039:
911:
662:
574:
543:
497:
446:
410:
379:
320:
242:
187:
148:≈ 0.0004 nm, at a laser wavelength of 590 nm). These tunable laser oscillators use
47:
164:
Additional developments in solid-state dye lasers were demonstrated with the introduction of
697:
654:
611:
535:
489:
371:
312:
277:
234:
637:
Zhu, X-L; Lam, S-K; Lo, D. (2000). "Distributed-feedback dye-doped solgel silica lasers".
177:
99:
693:
650:
607:
531:
485:
367:
308:
273:
230:
1143:
997:
858:
58:(PMMA), rather than a liquid solution of the dye. These lasers are also referred to as
701:
17:
1255:
1225:
1185:
1170:
835:
820:
789:
784:
623:
192:
182:
1235:
1230:
1180:
944:
939:
799:
794:
774:
469:
152:
yielding very high intracavity dispersions that can be nicely quantified using the
95:
1200:
1195:
1190:
1138:
923:
779:
769:
1148:
1022:
1014:
853:
992:
825:
804:
751:
742:
711:
566:
438:
402:
51:
666:
547:
501:
383:
324:
246:
875:
615:
1220:
1153:
759:
658:
539:
493:
375:
316:
238:
1089:
907:
840:
442:
406:
79:
281:
570:
472:(1994). "Solid-state multiple-prism grating dye-laser oscillators".
1205:
29:
34:
Organic solid-state narrow-linewidth tunable dye laser oscillator
879:
715:
561:
Duarte, F. J. (2015). "The physics of multiple-prism optics".
160:
Distributed feedback and waveguide solid-state dye lasers
1176:
ZEUS-HLONS (HMMWV Laser
Ordnance Neutralization System)
69:
SSDLs were introduced in 1967 by Soffer and McFarland.
168:
in 1999 and distributed feedback waveguides in 2002.
131:
108:
1163:
1125:
1012:
985:
930:
918:
813:
750:
140:
117:
86:High performance solid-state dye laser oscillators
891:
727:
8:
898:
884:
876:
734:
720:
712:
130:
107:
1057:Neodymium-doped yttrium lithium fluoride
513:
511:
464:
462:
209:
198:Multiple-prism grating laser oscillator
428:
426:
1075:Neodymium-doped yttrium orthovanadate
27:Laser with a dye-doped organic matrix
7:
150:multiple-prism grating architectures
64:solid-state dye-doped polymer lasers
166:distributed feedback laser designs
132:
109:
25:
1086:Yttrium calcium oxoborate (YCOB)
906:
154:multiple-prism grating equations
1211:Laboratory for Laser Energetics
141:{\displaystyle \Delta \lambda }
1133:Diode-pumped solid-state laser
54:-doped organic matrix such as
50:in which the gain medium is a
1:
702:10.1016/S0030-4018(02)02125-9
437:(2nd ed.). Boca Raton:
401:(2nd ed.). Boca Raton:
118:{\displaystyle \Delta \nu }
1278:
565:(2nd ed.). New York:
435:Tunable Laser Applications
399:Tunable Laser Applications
60:solid-state organic lasers
56:poly(methyl methacrylate)
1051:Yttrium lithium fluoride
932:Yttrium aluminium garnet
1241:List of petawatt lasers
262:Applied Physics Letters
1034:Terbium gallium garnet
142:
119:
35:
18:Solid state dye lasers
1065:Yttrium orthovanadate
1045:Solid-state dye laser
864:Solid-state dye laser
682:Optics Communications
616:10.1007/s003400050791
344:, 12823-12864 (2016).
143:
120:
40:solid-state dye laser
33:
831:Liquid-crystal laser
659:10.1364/AO.39.003104
563:Tunable Laser Optics
540:10.1364/AO.38.006347
494:10.1364/AO.33.003857
470:Duarte, F. J., F. J.
376:10.1364/OL.28.002088
317:10.1364/AO.34.001516
239:10.1364/AO.37.003987
129:
106:
1028:Yttrium iron garnet
924:Semiconductor laser
848:Active laser medium
694:2002OptCo.214..277O
651:2000ApOpt..39.3104Z
608:1999ApPhB..69..163W
532:1999ApOpt..38.6347D
486:1994ApOpt..33.3857D
368:2003OptL...28.2088D
309:1995ApOpt..34.1516M
274:1967ApPhL..10..266S
231:1998ApOpt..37.3987D
125:≈ 350 MHz (or
1262:Solid-state lasers
912:Solid-state lasers
138:
115:
73:Organic gain media
48:solid-state lasers
36:
1249:
1248:
1047:(SSDL/SSOL/SSDPL)
1040:Ti:sapphire laser
919:Distinct subtypes
873:
872:
645:(18): 3104–3107.
596:Applied Physics B
580:978-1-4822-4529-5
526:(30): 6347–6349.
480:(18): 3857–3860.
452:978-1-4200-6009-6
416:978-1-4200-6009-6
282:10.1063/1.1754804
225:(18): 3987–3989.
188:Organic photonics
92:laser oscillators
16:(Redirected from
1269:
910:
900:
893:
886:
877:
826:Excitation laser
736:
729:
722:
713:
706:
705:
688:(1–6): 277–283.
677:
671:
670:
634:
628:
627:
591:
585:
584:
558:
552:
551:
515:
506:
505:
466:
457:
456:
430:
421:
420:
394:
388:
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351:
345:
335:
329:
328:
303:(9): 1516–1518.
292:
286:
285:
257:
251:
250:
214:
147:
145:
144:
139:
124:
122:
121:
116:
100:laser linewidths
21:
1277:
1276:
1272:
1271:
1270:
1268:
1267:
1266:
1252:
1251:
1250:
1245:
1216:Laser Mégajoule
1164:Specific lasers
1159:
1121:
1115:
1109:
1080:
1070:
1008:
981:
926:
914:
904:
874:
869:
809:
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468:
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453:
432:
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424:
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396:
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362:(21): 2088–90.
353:
352:
348:
336:
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294:
293:
289:
259:
258:
254:
216:
215:
211:
206:
178:Laser linewidth
174:
162:
127:
126:
104:
103:
88:
75:
28:
23:
22:
15:
12:
11:
5:
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1183:
1178:
1173:
1167:
1165:
1161:
1160:
1158:
1157:
1151:
1146:
1144:Figure-8 laser
1141:
1136:
1129:
1127:
1123:
1122:
1120:
1119:
1116:
1113:
1110:
1107:
1104:
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928:
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916:
915:
905:
903:
902:
895:
888:
880:
871:
870:
868:
867:
861:
859:Ring-dye laser
856:
851:
845:
844:
843:
833:
828:
823:
817:
815:
811:
810:
808:
807:
802:
797:
792:
787:
782:
777:
772:
767:
762:
756:
754:
748:
747:
745:(liquid state)
741:
739:
738:
731:
724:
716:
708:
707:
672:
639:Applied Optics
629:
602:(2): 163–169.
586:
579:
553:
520:Applied Optics
507:
474:Applied Optics
458:
451:
422:
415:
389:
356:Optics Letters
346:
330:
297:Applied Optics
287:
252:
219:Applied Optics
208:
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26:
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14:
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10:
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3:
2:
1274:
1263:
1260:
1259:
1257:
1242:
1239:
1237:
1234:
1232:
1229:
1227:
1226:Mercury laser
1224:
1222:
1219:
1217:
1214:
1212:
1209:
1207:
1204:
1202:
1199:
1197:
1194:
1192:
1189:
1187:
1186:Cyclops laser
1184:
1182:
1179:
1177:
1174:
1172:
1171:Trident laser
1169:
1168:
1166:
1162:
1155:
1152:
1150:
1147:
1145:
1142:
1140:
1137:
1134:
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1038:
1035:
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1024:
1021:
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1016:
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1004:
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978:
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941:
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933:
929:
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921:
917:
913:
909:
901:
896:
894:
889:
887:
882:
881:
878:
865:
862:
860:
857:
855:
852:
850:(gain medium)
849:
846:
842:
839:
838:
837:
836:Organic laser
834:
832:
829:
827:
824:
822:
821:Tunable laser
819:
818:
816:
812:
806:
803:
801:
798:
796:
793:
791:
790:Umbelliferone
788:
786:
785:Rhodamine 123
783:
781:
778:
776:
773:
771:
768:
766:
763:
761:
758:
757:
755:
753:
749:
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723:
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703:
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687:
683:
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664:
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621:
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582:
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568:
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557:
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541:
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525:
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512:
508:
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491:
487:
483:
479:
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471:
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448:
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436:
429:
427:
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418:
412:
408:
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306:
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253:
248:
244:
240:
236:
232:
228:
224:
220:
213:
210:
203:
199:
196:
194:
193:Tunable laser
191:
189:
186:
184:
183:Organic laser
181:
179:
176:
175:
171:
169:
167:
159:
157:
155:
151:
135:
112:
101:
97:
93:
85:
83:
81:
72:
70:
67:
65:
61:
57:
53:
49:
45:
41:
32:
19:
1236:Vulcan laser
1181:Nova (laser)
1044:
945:Er:YAG laser
940:Nd:YAG laser
863:
800:(E)-Stilbene
795:(Z)-Stilbene
775:Rhodamine 6G
685:
681:
675:
642:
638:
632:
599:
595:
589:
562:
556:
523:
519:
477:
473:
434:
398:
392:
359:
355:
349:
341:
338:
333:
300:
296:
290:
265:
261:
255:
222:
218:
212:
163:
89:
76:
68:
63:
59:
43:
39:
37:
1201:Shiva laser
1196:Argus laser
1191:Janus laser
1139:Fiber laser
1002:Er:Yb:glass
780:Rhodamine B
770:Fluorescein
569:. pp.
441:. pp.
405:. pp.
268:(10): 266.
1149:Disk laser
1126:Structures
1023:Ruby laser
1015:gain media
854:Adamantane
765:Polyphenyl
752:Laser dyes
743:Dye lasers
339:Chem. Rev.
204:References
973:Ce:Gd:YAG
955:Nd:Ce:YAG
949:Nd:Cr:YAG
805:Tetracene
624:122330477
567:CRC Press
439:CRC Press
403:CRC Press
136:λ
133:Δ
113:ν
110:Δ
52:laser dye
1256:Category
1221:LULI2000
1154:F-center
1100:Ce:LiCAF
1097:Ce:LiSAF
1059:(Nd:YLF)
1005:Yb:glass
998:Er:glass
993:Nd:glass
760:Coumarin
667:18345240
548:18324163
502:20935726
384:14587824
325:21037689
247:18273368
172:See also
80:ORMOSILs
1231:ISKRA-6
1135:(DPSSL)
1118:Yb:SFAP
1103:Cr:ZnSe
1090:Nd:YCOB
1077:(Nd:YVO
841:Ormosil
814:Aspects
690:Bibcode
647:Bibcode
604:Bibcode
528:Bibcode
482:Bibcode
443:121–142
364:Bibcode
305:Bibcode
270:Bibcode
227:Bibcode
46:) is a
1112:Sm:CaF
1053:(YLF)
1013:Other
977:Gd:YAG
970:Ce:YAG
967:Tb:YAG
964:Sm:YAG
961:Dy:YAG
958:Ho:YAG
952:Yb:YAG
866:(SSDL)
665:
622:
577:
571:77–100
546:
500:
449:
413:
407:97–120
382:
323:
245:
96:Duarte
1206:HiPER
1156:laser
1106:U:CaF
1092:laser
1036:(TGG)
1030:(YIG)
986:Glass
620:S2CID
94:, by
1067:(YVO
663:PMID
575:ISBN
544:PMID
498:PMID
447:ISBN
411:ISBN
380:PMID
321:PMID
243:PMID
62:and
44:SSDL
698:doi
686:214
655:doi
612:doi
536:doi
490:doi
372:doi
342:116
313:doi
278:doi
235:doi
102:of
1258::
1071:)
696:.
684:.
661:.
653:.
643:39
641:.
618:.
610:.
600:69
598:.
573:.
542:.
534:.
524:38
522:.
510:^
496:.
488:.
478:33
476:.
461:^
445:.
425:^
409:.
378:.
370:.
360:28
358:.
319:.
311:.
301:34
299:.
276:.
266:10
264:.
241:.
233:.
223:37
221:.
156:.
82:.
66:.
38:A
1114:2
1108:2
1081:)
1079:4
1069:4
899:e
892:t
885:v
735:e
728:t
721:v
704:.
700::
692::
669:.
657::
649::
626:.
614::
606::
583:.
550:.
538::
530::
504:.
492::
484::
455:.
419:.
386:.
374::
366::
327:.
315::
307::
284:.
280::
272::
249:.
237::
229::
42:(
20:)
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