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Thermally tunable liquid crystal distributed feedback laser based on a polymer grating with nanogrooves fabricated by nanoimprint lithography

机译:基于带有纳米压印光刻技术的纳米沟槽的聚合物光栅的热可调液晶分布式反馈激光器

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This work demonstrates a thermally tunable dye-doped liquid crystal (DDLC) distributed feedback (DFB) laser based on a polymer grating. The surface emitting DDLC DFB laser is supported by the second-order Bragg grating with nanogrooves of periodicity of 360 nm which is pre-fabricated using the UV nanoimprint lithography (UV-NIL) method. The lasing wavelength of the DFB laser can be tuned from 625.1 nm to 606.35 nm if the temperature increases from 10 °C to 50 °C. The tunability of the laser is attributable to the temperature-sensitive feature in the effective refractive index of the LCs. Such a tunable laser can be used in the fabrication of tunable optical sources and biosensors, and in integrated photonic circuits, optical communication, and laser displays.
机译:这项工作演示了基于聚合物光栅的热可调染料掺杂液晶(DDLC)分布反馈(DFB)激光器。表面发射DDLC DFB激光器由周期为360 nm的纳米沟槽的二阶Bragg光栅支撑,该光栅是使用UV纳米压印光刻(UV-NIL)方法预制的。如果温度从10°C增加到50°C,则DFB激光器的激光发射波长可以从625.1 nm调整到606.35 nm。激光的可调性归因于LC的有效折射率中的温度敏感特性。这种可调激光器可用于可调光源和生物传感器的制造中,以及集成光子电路,光通信和激光显示器中。

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