Armani Andrea M, Srinivasan Akil, Vahala Kerry J
California Institute of Technology, 1200 East California Boulevard, Pasadena, California 91125, USA.
Nano Lett. 2007 Jun;7(6):1823-6. doi: 10.1021/nl0708359. Epub 2007 May 22.
As new synthetic, low-loss polymers are developed, polymer optical cavities are experiencing a revolution, in both fabrication design and functionality. Recently, a fabrication technique was developed that enabled planar arrays of polymeric resonators to achieve cavity Q factors greater than 1 million. In the present letter, this molding technique is expanded to fabricate resonators from polymers that have either thermal or UV curing mechanisms. The quality factors and broad band spectrum of these devices are determined at 680, 1300, and 1550 nm. These resonant cavities demonstrate quality factors which are competitive with photonic crystals and microdisk resonators.
随着新型合成低损耗聚合物的不断研发,聚合物光学腔在制造设计和功能方面正经历一场变革。最近,一种制造技术得以开发,使聚合物谐振器的平面阵列能够实现大于100万的腔品质因数。在本信函中,这种模塑技术得到扩展,用于制造具有热固化或紫外线固化机制的聚合物谐振器。这些器件的品质因数和宽带光谱在680、1300和1550纳米处测定。这些谐振腔展现出与光子晶体和微盘谐振器相媲美的品质因数。