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Absorption coefficient and Raman gain in CVD diamond as functions of pump wavelength: Towards efficient diamond Raman lasers

机译:CVD金刚石中的吸收系数和拉曼增益作为泵波长的功能:朝向有效的钻石拉曼激光器

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The design of diamond Raman lasers is contingent upon the wavelength dependence of the absorption coefficient and the Raman gain coefficient in chemical vapour deposition (CVD) grown diamond. Optical absorption in CVD diamond results mainly from the presence of substitutional nitrogen. The absorption coefficient increases at shorter wavelengths and can be significant for diamonds with substitutional nitrogen concentrations of the order of a few hundred parts per billion (ppb). This absorption should be taken into account during measurements of the Raman gain. The dependence of the absorption and Raman gain coefficients on the pump wavelength will determine the useful spectral range for diamond Raman lasers.
机译:金刚石拉曼激光器的设计取决于吸收系数的波长依赖性和化学气相沉积(CVD)生长金刚石中的拉曼增益系数。 CVD金刚石中的光学吸收主要来自存在于取代氮的存在。吸收系数在更短的波长下增加,对于具有额外数​​十亿分(PPB)的钻石的钻石可能对钻石具有重要意义(PPB)。在拉曼增益的测量期间,应考虑这种吸收。吸收和拉曼增益系数对泵波长的依赖性将确定金刚石拉曼激光器的有用光谱范围。

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