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Development of High Purity, Optical Grade Single Crystal CVD Diamond for Infra-Cavity Cooling

机译:用于腔内冷却的高纯度光学级单晶CVD金刚石的开发

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Microwave assisted chemical vapour deposited bulk diamond products have been used in a range of high power laser systems, due to low absorption across a range of wavelengths and exceptional thermal properties. However the application of polycrystalline products has frequently been limited to applications at longer wavelengths or thermal uses outside of the optical path due to the birefringence and scatter that are intrinsic properties of the polycrystalline materials. However, there are some solid state structures, including thin disc gain modules and amplifiers, that will gain significantly in terms of potential output powers if diamond could be used as a heat spreader in the optical path as well as a heat spreader on the rear surface of the disk. Therefore single crystal grades of diamond have been developed that overcome the limitations of the polycrystalline material, with low absorption, low scatter and low birefringence grades for demanding optical applications. We will present new data, characterising the performance of these materials across infra-red and visible wavelengths with absorption coefficient measured by laser calorimetry at a range of wavelengths from 1064 nm to 452 nm.
机译:微波辅助化学气相沉积的大块金刚石产品由于在一定波长范围内的低吸收和出色的热性能而被用于各种高功率激光系统中。然而,由于双折射和散射是多晶材料的固有特性,因此多晶产品的应用经常限于较长波长的应用或光路之外的热用途。但是,如果将钻石用作光路中的散热器以及背面的散热器,则某些固态结构(包括薄盘增益模块和放大器)将在潜在输出功率方面显着提高。磁盘。因此,已经开发出克服了多晶材料局限性的单晶等级的金刚石,其具有低吸收,低散射和低双折射等级,用于要求苛刻的光学应用。我们将提供新的数据,表征这些材料在红外和可见光波长范围内的性能,并通过激光量热法在1064 nm至452 nm波长范围内测量吸收系数。

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