process offers a simple, non-lithographic way to fabricate twodimensional periodic nanostructures. Such regular alumina nanopillar arrays with an adjustable lattice constant (90± 300 nm) are suitable for two-dimensional photonic bandgap structure materials for use in UV-vis wavelength regions. In ad
✦ LIBER ✦
Mirrorless Lasing and Energy Transfer in Cholesteric Liquid Crystals Doped with Laser Dyes
✍ Scribed by Alvarez, E.; He, M.; Muñoz, A. F.; Palffy-muhoray, P.; Serak, S. V.; Taheri, B.; Twieg, R.
- Book ID
- 118274043
- Publisher
- Taylor and Francis Group
- Year
- 2001
- Tongue
- English
- Weight
- 353 KB
- Volume
- 369
- Category
- Article
- ISSN
- 1058-725X
No coin nor oath required. For personal study only.
📜 SIMILAR VOLUMES
Mirrorless Lasing in a Dye-Doped Ferroel
✍
M. Ozaki; M. Kasano; D. Ganzke; W. Haase; K. Yoshino
📂
Article
📅
2002
🏛
John Wiley and Sons
🌐
English
⚖ 188 KB
👁 2 views
Phototunable lasing in dye-doped cholest
✍
Chanishvili, Andro; Chilaya, Guram; Petriashvili, Gia; Barberi, Riccardo; Bartol
📂
Article
📅
2003
🏛
American Institute of Physics
🌐
English
⚖ 431 KB
Random lasing in a dye doped cholesteric
✍
Benqiao He; Qing Liao; Yong Huang
📂
Article
📅
2008
🏛
Elsevier Science
🌐
English
⚖ 218 KB
Lasing in Dye-Doped Cholesteric Liquid C
✍
A. Chanishvili; G. Chilaya; G. Petriashvili; R. Barberi; R. Bartolino; G. Cippar
📂
Article
📅
2004
🏛
John Wiley and Sons
🌐
English
⚖ 138 KB
👁 1 views
**Tuning of a dye‐doped cholesteric liquid crystal mirrorless laser** in the violet– ultraviolet wavelength range is achieved using two different strategies for controlling the periodicity of the cholesteric helical structures. Both methods are shown produce a shift of the lasing wavelength by 30–40
Enhanced laser performance of cholesteri
✍
Dolgaleva, Ksenia; Wei, Simon K. H.; Lukishova, Svetlana G.; Chen, Shaw H.; Schw
📂
Article
📅
2008
🏛
Optical Society of America
🌐
English
⚖ 516 KB
Numerical simulation of stimulated emiss
Numerical simulation of stimulated emission and lasing in dye doped cholesteric liquid crystal films
✍
Penninck, L.; Beeckman, J.; De Visschere, P.; Neyts, K.
📂
Article
📅
2013
🏛
American Institute of Physics
🌐
English
⚖ 883 KB