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Two-frequency laser with distributed feedback formed by a space charge wave

机译:由空间电荷波形成分布反馈的两频激光器

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摘要

The regimes of amplification and generation of optical TE waves arising on a grating formed by a space charge wave (SCW) in a plane optical waveguide based on an n-GaAs semiconductor are considered. For the perturbed n-GaAs waveguide, the reflectance and transmittance of TE modes with the same indices (m = n = 0) are calculated depending on the pump level and length of interaction between the optical and SCWs. It is shown that even with a relatively small depth of modulation of the dielectric constant (Delta epsilon approximate to 10-5) cm(-1)) and corresponding SCW-optical interaction length, there is a possibility of not only amplification, but also generation of forward and backward optical modes at a wavelength of 10.6 mu m. The results can be used to create tunable semiconductor laser generators based on the SCW-optical interaction and operating in the near and mid-IR range.
机译:考虑了在基于n-GaAs半导体的平面光波导中由空间电荷波(SCW)形成的光栅上产生的光TE波的放大和产生的机制。对于扰动的n-GaAs波导,根据泵浦电平和光波与SCW之间相互作用的长度,计算出具有相同指数(m = n = 0)的TE模式的反射率和透射率。结果表明,即使介电常数的调制深度相对较小(Δepsilon近似于10-5)cm(-1)和相应的SCW-光相互作用长度,也有可能不仅放大,而且放大产生10.6微米波长的前向和后向光学模式。该结果可用于基于SCW光学相互作用并在近红外和中红外范围内运行的可调谐半导体激光发生器。

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