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Synchronous initiation of optical detonators by Q-Switched solid laser sources

机译:调Q固体激光源同步引发雷管

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The initiation of pyrotechnic substances by a laser light has been studied for more than 30 years. But until recently the use of this technology for defence applications encountered three main technical problems: the volume and the mass of lasers, the linear loss of optical fibres and their possible damage caused by the transport of strong laser power. Recent technical progress performed in the field of electrical and optical devices are now very promising for future opto-pyrotechnic functional chains.rnThe objective of this paper is to present a demonstrator developed in order to initiate in a synchronous way four optical detonators and to measure the dispersion of their functioning times. It includes four compact Q-switched Nd:Cr:GSGG solid laser sources, pumped by flash lamp (energy ≈110mJ, FWHM ≈8.5 ns), two ultra-fast electro-optical selectors (based on RTP crystals) used to steer the laser beam and six optical fibre lines to transmit the laser pulses to the optical detonators. The set-up integrates also complex control and safety systems, as well as cameras allowing an optimal alignment of optical fibres.rnExperiments led us to initiate in a synchronous way four detonators with a mean scattering of 50 ns. The perspectives in this domain of initiation concern mainly the miniaturization and the hardening to the environments of electrical and optical components.
机译:激光引发烟火物质的研究已经进行了30多年。但是直到最近,将该技术用于国防应用仍遇到三个主要技术问题:激光器的体积和质量,光纤的线性损耗以及由于传输强大的激光功率而可能造成的损坏。对于未来的烟火功能链,电气和光学设备领域的最新技术进展现在很有希望。本文的目的是提出一种演示器,以同步方式启动四个光学雷管并测量分散其运行时间。它包括四个紧凑的Q开关Nd:Cr:GSGG固体激光源,由闪光灯(能量≈110mJ,FWHM≈8.5ns)泵浦,两个用于控制激光器的超快电光选择器(基于RTP晶体)光束和六根光纤线将激光脉冲传输到光学雷管。该设置还集成了复杂的控制和安全系统,以及可以实现光纤最佳对准的摄像头。rnExperiments使我们以同步方式启动四个平均散射时间为50 ns的雷管。在此起始领域中的观点主要涉及电气和光学组件的小型化和对环境的硬化。

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