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自组装胆甾相液晶微滴制成的3D微激光器。

3D microlasers from self-assembled cholesteric liquid-crystal microdroplets.

作者信息

Humar M, Musevic I

机构信息

J. Stefan Institute, Ljubljana, Slovenia.

出版信息

Opt Express. 2010 Dec 20;18(26):26995-7003. doi: 10.1364/OE.18.026995.

Abstract

We demonstrate a tunable and omnidirectional microlaser in the form of a microdroplet of a dye-doped, cholesteric liquid crystal in a carrier fluid. The cholesteric forms a Bragg-onion optical microcavity and the omnidirectional 3D lasing is due to the stimulated emission of light from the dye molecules in the liquid crystal. The lasing wavelength depends solely on the natural helical period of the cholesteric and can be tuned by varying the temperature. Millions of microlasers can be formed simply by mixing a liquid crystal, a laser dye and a carrier fluid, thus providing microlasers for soft-matter photonic devices.

摘要

我们展示了一种可调谐且全向的微激光器,其形式为载液中掺杂染料的胆甾相液晶微滴。胆甾相形成布拉格洋葱光学微腔,全向三维激光发射源于液晶中染料分子的受激发射。激光波长仅取决于胆甾相的自然螺旋周期,可通过改变温度进行调谐。只需将液晶、激光染料和载液混合,就能形成数百万个微激光器,从而为软物质光子器件提供微激光器。

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