25:
611:
134:
ions, which may be excited by visible or infrared light, and undergo an electronic transition resulting in emission of coherent infrared light at a lower frequency, usually at 1064 nm (other transitions in Nd are available, and can be selected for by external optics).
167:
878:
545:"Correlation between rare-earth oscillator strengths and rare-earth–valence-band interactions in neodymium-doped YMO4 (M=V, P, As), Y3Al5O12, and LiYF4 matrices"
144:
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47:
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593:
835:
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163:
37:
753:
634:
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41:
33:
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736:
58:
767:
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474:
Polarized laser emission: π-polarization; parallel to optic axis (c-axis) (for a-cut crystal)
108:
559:
523:
365:
240:
8:
730:
112:
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527:
442:
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984:
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483:
Absorption coefficients at 808 nm for different doping concentrations:
120:
578:
903:
898:
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841:
626:
462:
509:"Infrared Spectral Emittance and Optical Properties of Yttrium Vanadate"
409:
851:
725:
717:
270:
480:: 0.96 nm (257 GHz) at 1064 nm (for 1.1 atm% Nd doped)
131:
126:
As in all neodymium-doped laser crystals, the lasing action of Nd:YVO
104:
923:
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Emission cross-section at 1064 nm: 30×10 cm (Reference:
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199:
148:
543:
O. Guillot-Noel; B. Bellamy; B. Viana; D. Gourier (1999).
119:. It comes as a transparent blue-tinted material. It is
879:
ZEUS-HLONS (HMMWV Laser
Ordnance Neutralization System)
507:
H. E. Rast; H. H. Caspers & S. A. Miller (1968).
123:, therefore rods made of it are usually rectangular.
458:Absorption cross-section at 808 nm: 5.5×10 cm
368:lifetime) as a function of Nd ions concentration:
956:
46:but its sources remain unclear because it lacks
594:
608:
601:
587:
273:: 914 nm, 1064 nm, 1342 nm
77:Learn how and when to remove this message
760:Neodymium-doped yttrium lithium fluoride
378:Fluorescence lifetime (μs)@ 1064 nm
957:
778:Neodymium-doped yttrium orthovanadate
582:
263:
90:Neodymium-doped yttrium orthovanadate
18:
257:perpendicular to C-axis: 5.10 W·m·K
138:
13:
276:Crystal class: positive uniaxial,
14:
996:
789:Yttrium calcium oxoborate (YCOB)
609:
23:
914:Laboratory for Laser Energetics
117:diode-pumped solid-state lasers
836:Diode-pumped solid-state laser
375:Nd concentration (atom %)
1:
500:
216:Thermal expansion coefficient
111:. It is commonly used as an
7:
487:
10:
1001:
103:material formed by adding
866:
828:
715:
688:
633:
621:
130:is due to its content of
754:Yttrium lithium fluoride
635:Yttrium aluminium garnet
572:10.1103/PhysRevB.60.1668
494:Yttrium aluminium garnet
327:=2.1652, at 1064 nm
32:This article includes a
944:List of petawatt lasers
536:10.1103/PhysRev.169.705
364:Fluorescence lifetime (
359:=2.2560, at 532 nm
343:=2.1858, at 808 nm
61:more precise citations.
737:Terbium gallium garnet
168:tetragonal bipyramidal
768:Yttrium orthovanadate
748:Solid-state dye laser
109:yttrium orthovanadate
366:spontaneous emission
241:Thermal conductivity
975:Neodymium compounds
731:Yttrium iron garnet
627:Semiconductor laser
564:1999PhRvB..60.1668G
528:1968PhRv..169..705R
469:, 1405-1414 (1976).
397:, 5517-5522 (1978).
113:active laser medium
615:Solid-state lasers
448:2005-06-26 at the
428:2005-06-26 at the
264:Optical properties
34:list of references
980:Yttrium compounds
952:
951:
750:(SSDL/SSOL/SSDPL)
743:Ti:sapphire laser
622:Distinct subtypes
455:
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155:Crystal structure
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16:Laser gain medium
992:
965:Laser gain media
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558:(3): 1668–1677.
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410:Castech web site
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139:Basic properties
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57:this article by
48:inline citations
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919:Laser Mégajoule
867:Specific lasers
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450:Wayback Machine
430:Wayback Machine
393:J. Appl. Phys.
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38:related reading
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847:Figure-8 laser
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522:(3): 705–709.
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478:Gain-bandwidth
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145:Atomic density
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42:external links
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929:Mercury laser
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889:Cyclops laser
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874:Trident laser
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206:Mohs hardness
204:
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173:space group D
172:
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939:Vulcan laser
884:Nova (laser)
777:
648:Er:YAG laser
643:Nd:YAG laser
555:
552:Phys. Rev. B
551:
519:
515:
466:
463:
394:
353:
346:
337:
330:
321:
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246:parallel to
187:
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179:
125:
121:birefringent
93:
89:
88:
73:
64:
53:Please help
45:
904:Shiva laser
899:Argus laser
894:Janus laser
842:Fiber laser
705:Er:Yb:glass
271:wavelengths
235:=11.37×10/K
147:: ~1.37×10
101:crystalline
59:introducing
959:Categories
852:Disk laser
829:Structures
726:Ruby laser
718:gain media
548:(abstract)
512:(abstract)
501:References
381:Reference
164:tetragonal
985:Vanadates
676:Ce:Gd:YAG
658:Nd:Ce:YAG
652:Nd:Cr:YAG
516:Phys. Rev
352:=2.0210,
336:=1.9721,
320:=1.9573,
225:=4.43×10/
212:-like, ~5
132:neodymium
105:neodymium
67:June 2019
970:Crystals
924:LULI2000
857:F-center
803:Ce:LiCAF
800:Ce:LiSAF
762:(Nd:YLF)
708:Yb:glass
701:Er:glass
696:Nd:glass
488:See also
446:Archived
426:Archived
107:ions to
934:ISKRA-6
838:(DPSSL)
821:Yb:SFAP
806:Cr:ZnSe
793:Nd:YCOB
780:(Nd:YVO
560:Bibcode
524:Bibcode
269:Lasing
250:: 5.23
198:: 4.22
196:Density
186:=7.12,
99:) is a
55:improve
815:Sm:CaF
756:(YLF)
716:Other
680:Gd:YAG
673:Ce:YAG
670:Tb:YAG
667:Sm:YAG
664:Dy:YAG
661:Ho:YAG
655:Yb:YAG
248:C-axis
161:zircon
94:Nd:YVO
909:HiPER
859:laser
809:U:CaF
795:laser
739:(TGG)
733:(YIG)
689:Glass
496:(YAG)
210:Glass
190:=6.29
149:atoms
40:, or
770:(YVO
464:JOSA
254:·m·K
115:for
568:doi
532:doi
520:169
436:2.0
416:1.1
406:100
403:1.0
389:110
386:0.4
202:/cm
151:/cm
961::
774:)
566:.
556:60
554:.
550:.
530:.
518:.
514:.
467:66
439:50
419:90
395:49
311:,
297:,
243::
218::
208::
175:4h
157::
44:,
36:,
817:2
811:2
784:)
782:4
772:4
602:e
595:t
588:v
574:.
570::
562::
538:.
534::
526::
471:)
356:e
354:n
349:o
347:n
340:e
338:n
333:o
331:n
324:e
322:n
317:o
315:n
308:c
306:n
304:=
301:e
299:n
294:b
292:n
290:=
287:a
285:n
283:=
280:o
278:n
252:W
233:c
231:α
227:K
223:a
221:α
200:g
188:c
184:b
182:=
180:a
170:)
166:(
128:4
96:4
92:(
80:)
74:(
69:)
65:(
51:.
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