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Sheared polymer network liquid crystal for fast-response variable optical attenuators

机译:剪切聚合物网络液晶用于快速响应的可变光衰减器

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A variable optical attenuator (VOA) at λ = 1.55 μm using a sheared polymer network liquid crystal (SPNLC) is demonstrated. SPNLC is fabricated by mixing ~ 15 wt % photo-polymerizable monomer in a LC host. To polymerize the SPNLC cell, a two-step UV curing process was adopted. Before shearing, the cell scatters light strongly, but after shearing the cell becomes highly transparent in the near 1R region. Using an E7-based SPNLC, the attenuation of our VOA is rather insensitive to wavelength over the ITU C-band. The rise time and decay time were measured to be 35 μs and 205 μs, respectively, at room temperature. Such a response time is at least one order magnitude faster than the state-of-the-art nematic competitors. Comparing with other polymer-stabilized liquid crystals, the SPNLC exhibits a lower driving voltage and negligible light scattering loss in the IR spectral region. A reflection type, polarization-independent VOA with ~ 240 μs response time and -32 dB dynamic range was demonstrated at room temperature and 35 V_(rms) voltage.
机译:演示了使用剪切聚合物网络液晶(SPNLC)在λ= 1.55μm的可变光衰减器(VOA)。 SPNLC是通过在LC主体中混合〜15 wt%的可光聚合单体而制成的。为了聚合SPNLC电池,采用了两步UV固化工艺。剪切之前,细胞会强烈散射光,但是剪切后,细胞在1R附近变得高度透明。使用基于E7的SPNLC,我们的VOA的衰减对ITU C波段的波长相当不敏感。在室温下,上升时间和衰减时间分别测量为35μs和205μs。这样的响应时间比最新的向列竞争产品快至少一个数量级。与其他聚合物稳定的液晶相比,SPNLC在红外光谱区域显示出较低的驱动电压和可忽略的光散射损耗。在室温和35 V_(rms)电压下,反射型响应时间约为240μs,偏振态独立于VOA,动态范围为-32 dB。

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