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- Anhui Crystro Crystal Material
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- Laser 2000 (UK) Ltd.
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- Optical Surfaces Limited
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水晶类型: BaF2 传输范围: 0.135 - 15 um 高度: 10mm 宽度: 10mm 厚度: 0.5mm
交叉极化波(XPW)的产生是一个非线性三阶过程,在此过程中基波和产生的波具有相同的频率。然而,所产生的波与泵浦波偏振垂直偏振。在XPW产生过程中,相位匹配发生在大带宽上。这意味着基波和XPW具有相同的相速和群速。交叉极化波(XPW)的产生过程由晶体的三阶非线性和张量的各向异性驱动。用于交叉偏振波(XPW)产生的典型光学材料是具有Z(-#91;001-#93;)或全息(-#91;011-#93;)晶体取向的氟化钡(BaF2)晶体。理论预测,当使用-#91;011-#93;-切割BaF2晶体时,较大XPW能量转换效率约为35%,伴随的脉冲缩短因子为√3,对应于纯三阶非线性过程。
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水晶类型: BaF2 传输范围: 0.135 - 15 um 高度: 10mm 宽度: 10mm 厚度: 1.5mm
交叉极化波(XPW)的产生是一个三阶非线性过程,在这个过程中,基波和产生的波具有相同的频率。然而,所产生的波与泵浦波偏振垂直偏振。在XPW产生过程中,相位匹配发生在大带宽上。这意味着基波和XPW具有相同的相速度和群速度。交叉偏振波(XPW)的产生过程是由晶体的三阶非线性和张量的各向异性驱动的。用于交叉偏振波(XPW)产生的典型光学材料是具有Z(-#91;001-#93;)或全息(-#91;011-#93;)晶体取向的氟化钡(BaF2)晶体。理论预测,当使用-#91;011-#93;-切割BaF2晶体时,较大XPW能量转换效率约为35%,伴随的脉冲缩短因子为√3,对应于纯三阶非线性过程。
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水晶类型: BaF2 传输范围: 0.135 - 15 um 高度: 10mm 宽度: 10mm 厚度: 2.5mm
交叉极化波(XPW)的产生是一个非线性的三阶过程,在此过程中基波和产生的波具有相同的频率。然而,所产生的波与泵浦波偏振垂直偏振。在XPW产生过程中,相位匹配发生在大带宽上。这意味着基波和XPW具有相同的相速和群速。交叉极化波(XPW)的产生过程由晶体的三阶非线性和张量的各向异性驱动。用于交叉偏振波(XPW)产生的典型光学材料是具有Z(-#91;001-#93;)或全息(-#91;011-#93;)晶体取向的氟化钡(BaF2)晶体。理论预测,当使用-#91;011-#93;-切割BaF2晶体时,较大XPW能量转换效率约为35%,伴随的脉冲缩短因子为√3,对应于纯三阶非线性过程。
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材料: YVO4 传输波长范围: 500 - 4000 nm 最大消光比: >= 100,000:1 波前失真: <= Lambda/4 表面质量: 10-5 scratch-dig
Glan Taylor棱镜偏振器由两个相同的双折射材料棱镜组成,这两个棱镜以空气间隔组装。它具有小于1.0的长度与孔径比,使其成为相对薄的偏振器。没有侧逸出窗口的偏振器适合于低到中等功率的在线_排序,其中不需要侧拒绝光束,这适合于各种各样的在线_排序,特别是对于准直的输入光束。下面列出了不同材料偏振器的角场,以供比较。特点:•空气间隔•接近Brewster&Aposs角度切割。•高偏振纯度。•短长度。•适用于不需要抑制光束的低至中等功率应用。
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材料: Calcite 波长范围: 350 - 2300 nm 最大消光比: >= 100000:1 波前失真: <= Lambda/4 表面质量: 10-5 scratch-dig
Glan Thompson偏振器由两个方解石棱镜或a-BBO棱镜胶合而成。Glan Thompson有两种类型。一种是标准格式,另一种是长格式。它们的长径比分别为2.5:1和3.0:1。Glan Thompson倾向于具有比空气间隔偏振器更高的消光比。在紫外光谱中,它们的透射受到双折射材料以及水泥层中吸收的限制。α-BBO偏振器和方解石偏振器可分别用于约220至900nm和350至2300nm,偏振器具有任何设计中较宽的视场角。该偏振器的标准形式具有2.5:1的长度与孔径比,在589nm处具有大于15°的全接受锥角,关于输入轴对称,而具有3:1比的长形式具有26°的视场角。所有这些的极化场F1和F2如下图所示。