1、

Continuously tunable laser output at 60.4 nm in the range of 735.7 nm to 796.1 nm has been obtained in an alexandrite laser with a three-element quartz birefringent filter.

用三元石英双折射滤光片对紫翠宝石激光进行调谐,已得到从735.7~796.1nm间60.4nm的连续调谐输出。

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2、

The ultraviolet ( 355 nm) laser induced desorption of CCl4 cryogenic film on quartz surface at 130 K is investigated using time-resolved quadrupole mass spectroscopy.

本文研究了CCl4低温(130K)吸附于石英表面上经紫外激光辐照后引起的脱附过程。

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3、

The quartz microspheres with different diameters are fabricated by melting the taper fibers with corresponding diameters using CO2 laser. The spherical microcavity coupling system is constructed with taper fiber and the quartz microsphere.

通过CO2激光器熔融不同直径的熔锥光纤以得到相应直径的石英玻璃微球,利用此微球和熔锥光纤,构造了球微腔耦合系统。

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4、

Chemical glue is often used to encapsulate fiber-optic F-P interferometric sensor to fixup the F-P cavity, which is easy to come unglued as aging. A new encapsulation method to melt fiber and quartz glass tube by high-frequency CO_2 laser is put forward.

针对光纤F-P干涉仪(FPI)传感器封装普遍采用的化学胶水粘合方式存在的胶水老化而脱胶的问题,提出一种用高频CO2激光脉冲加热使光纤与石英管永久熔合进行封装的新方法。

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5、

The technique for indium sealing by rubbing coating is described. He-Ne laser tubes, standard pulsed xenon lamps thus sealed and the fusion technique of glass with copper, glass with stainless steel, quartz with aluminum is reported.

本文叙述了摩擦涂敷铟封工艺,报导了用这种工艺封接的He-Ne激光管、标准脉冲氙灯及玻璃与铜、玻璃与不锈钢、石英与铝等的封接技术。

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6、

A CdS thin film filter is grown on quartz substrate using femtosecond pulsed laser deposition.

采用脉冲飞秒激光沉积方法,在石英衬底上制备了CdS薄膜滤波器。

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7、

Influence of quartz crystal temperature effect on optical polarization characteristics of four-frequency differential laser gyro

石英晶体温度效应对四频差动激光陀螺中光场偏振特性的影响

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8、

Artificial sapphire crystal of Al2O3 is much more suitable for these requirements, than quartz, thus, contact methods of medical laser will be used widely and effectively.

在这些方面,Al2O3的人工兰宝石晶体比石英适合得多,因此,医学激光的接触性方法可以广泛和有效地应用。

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9、

Study on the surface appearance of laser beam cutting fused quartz crystals

熔融石英激光切割表面形貌的研究

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10、

Using nanosphere lithography laser deposition , Au nanoparticles with different height have been fabricated on quartz substrates.

采用纳米球蚀刻技术在石英衬底上制备了不同高度的金纳米颗粒阵列.

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