Near-infrared laser emission from luminescent plastic waveguides

被引:43
作者
Kobayashi, T [1 ]
Savatier, JB
Jordan, G
Blau, WJ
Suzuki, Y
Kaino, T
机构
[1] Univ Dublin Trinity Coll, Dept Phys, Mat Ireland Polymer Res Ctr, Dublin 2, Ireland
[2] Tohoku Univ, Inst Multidisciplinary Res Adv Mat, Aoba Ku, Sendai, Miyagi 9808577, Japan
关键词
D O I
10.1063/1.1772524
中图分类号
O59 [应用物理学];
学科分类号
摘要
We have demonstrated optical gain and laser emission in multimoded plastic waveguides containing a near-infrared-emitting compound, 2-(6-(4-dimethylaminophenyl)-2,4-neopentylene-1,3,5hexatrienyl)-3-methyl-benzothiazolium perchlorat. The poly(1-vinyl-2-pyrrolidone)-base planar waveguides, 1 cm in length and 50 mum in thickness, doped with 0.5 wt % of the compound have exhibited lasing at 820 nm under transverse nanosecond photoexcitation at 532 nm. Optical feedback is provided by the 4% reflective facets of the cleaved waveguide edges. The threshold for lasing is found, to be 128 +/- 30 muJ/cm(2) (25.5 +/- 5.9 kW/cm(2)). Gain spectroscopy has shown a moderate net modal gain of 2.6 +/- 0.3 cm(-1) (11.3 +/- 1.3 dB/cm) at 820 nm for the pump fluence of 115 muJ/cm(2) (23.1 kW/cm(2)). Our results will open the door to the study and development of compact plastic waveguide lasers and amplifiers operating in the near-infrared region. (C) 2004 American Institute of Physics.
引用
收藏
页码:185 / 187
页数:3
相关论文
共 15 条
[1]  
[Anonymous], UNPUB
[2]   1.3 μm light amplification in dye-doped hybrid sol-gel channel waveguides [J].
Casalboni, M ;
De Matteis, F ;
Merlo, V ;
Prosposito, P ;
Russo, R ;
Schutzmann, S .
APPLIED PHYSICS LETTERS, 2003, 83 (03) :416-418
[3]   Advances in polymer integrated optics [J].
Eldada, L ;
Shacklette, LW .
IEEE JOURNAL OF SELECTED TOPICS IN QUANTUM ELECTRONICS, 2000, 6 (01) :54-68
[4]   Semiconducting polymers: A new class of solid-state laser materials [J].
Hide, F ;
DiazGarcia, MA ;
Schwartz, BJ ;
Andersson, MR ;
Pei, QB ;
Heeger, AJ .
SCIENCE, 1996, 273 (5283) :1833-1836
[5]   Laser action in poly(m-phenylenevinylene-co-2,5-dioctoxy-p-phenylenevinylene) [J].
Holzer, W ;
Penzkofer, A ;
Gong, SH ;
Bleyer, A ;
Bradley, DDC .
ADVANCED MATERIALS, 1996, 8 (12) :974-978
[6]   FABRICATION OF LARGE-CORE, HIGH-DELTA OPTICAL WAVE-GUIDES IN POLYMERS [J].
KAGAMI, M ;
ITO, H ;
ICHIKAWA, T ;
KATO, S ;
MATSUDA, M ;
TAKAHASHI, N .
APPLIED OPTICS, 1995, 34 (06) :1041-1046
[7]   Fluorinated polyimide waveguides with low polarization-dependent loss and their applications to thermooptic switches [J].
Kobayashi, J ;
Matsuura, T ;
Hida, Y ;
Sasaki, S ;
Maruno, T .
JOURNAL OF LIGHTWAVE TECHNOLOGY, 1998, 16 (06) :1024-1029
[8]   Laser action in organic semiconductor waveguide and double-heterostructure devices [J].
Kozlov, VG ;
Bulovic, V ;
Burrows, PE ;
Forrest, SR .
NATURE, 1997, 389 (6649) :362-364
[9]   Fabrication of polymeric large-core waveguides for optical interconnects using a rubber molding process [J].
Lee, BT ;
Kwon, MS ;
Yoon, JB ;
Shin, SY .
IEEE PHOTONICS TECHNOLOGY LETTERS, 2000, 12 (01) :62-64
[10]   Low-loss polymeric optical waveguides with large cores fabricated by hot embossing [J].
Mizuno, H ;
Sugihara, O ;
Kaino, T ;
Okamoto, N ;
Hosino, M .
OPTICS LETTERS, 2003, 28 (23) :2378-2380