Lin Shih-Hung, Shyu Cang-Yi, Liu Jui-Hsiang, Yang Po-Chih, Mo Ting-Shan, Huang Shuan-Yu, Lee Chia-Rong
Institute of Electro-Optical Science and Engineering and Advanced Optoelectronic Technology Center, National Cheng Kung University, Tainan, Taiwan 701, Republic of China.
Opt Express. 2010 Apr 26;18(9):9496-503. doi: 10.1364/OE.18.009496.
This study investigates, for the first time, a photoerasable and photorewritable spatially-tunable laser using a dye-doped cholesteric liquid crystal (DDCLC) with a photoisomerizable chiral dopant (AzoM). UV illumination via a photomask with a transmittance-gradient can create a pitch gradient in the cell such that the lasing wavelength can be spatially tuned over a wide band of 134nm. The pitch gradient is generated by the UV-irradiation-induced gradient of the cis-AzoM concentration and therefore the induced gradient of the cell HTP value, resulting in the spatial tunability of the laser. Furthermore, the laser has advantages of photoerasability and photorewritability. The spatial tunability of the laser can undergo more than 100 cycles of photoerasing and photorewriting processes without decay or damage.
本研究首次对一种使用掺杂有光致异构手性掺杂剂(偶氮甲碱,AzoM)的染料掺杂胆甾相液晶(DDCLC)的可光擦除和可光重写的空间可调谐激光器进行了研究。通过具有透射率梯度的光掩模进行紫外线照射,可以在液晶盒中产生螺距梯度,从而使激光波长能够在134nm的宽波段内进行空间调谐。螺距梯度是由紫外线照射引起的顺式偶氮甲碱浓度梯度以及由此导致的液晶盒热致螺旋 pitch(HTP)值梯度产生的,从而实现了激光器的空间可调谐性。此外,该激光器具有光擦除和光重写的优点。激光器的空间可调谐性可以经历100多个光擦除和光重写过程循环而不会衰减或损坏。