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Beam displacement as a function of temperature and turbulence length scale at two different laser radiation wavelengths

机译:在两种不同的激光辐射波长下,光束位移与温度和湍流长度尺度的关系

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Narrow laser beams directed from aircraft may at times pass through the exhaust plume of the engines and potentially degrade some of the laser beam characteristics. This paper reports on controlled studies of laser beam deviation arising from propagation through turbulent hot gases, in a well-characterized laboratory burner, with conditions of relevance to aircraft engine exhaust plumes. The impact of the temperature, laser wavelength, and turbulence length scale on the beam deviation has been investigated. It was found that the laser beam displacement increases with the turbulent integral length scale. The effect of temperature on the laser beam angular deviation, sigma, using two different laser wavelengths, namely 4.67 (mu)m and 632.8 nm, was recorded. It was found that the beam deviation for both wavelengths may be semiempirically modeled using a single function of the form, sigma velence a(b + (1/T)~(2))~(-1), with two parameters only, a and b, where sigma is in microradians and T is the temperature in deg C.
机译:从飞机发出的窄激光束有时可能会穿过发动机的排气羽流,并可能降低某些激光束的特性。本文报道了在特征明确的实验室燃烧器中,通过湍流热气体传播而引起的激光束偏离的受控研究,这些条件与飞机发动机的废气羽流有关。研究了温度,激光波长和湍流长度尺度对光束偏差的影响。已经发现,激光束位移随着湍流积分长度尺度而增加。记录了温度对使用两种不同的激光波长,即4.67μm和632.8nm的激光束角偏差σ的影响。已经发现,可以使用形式为σvelence a(b +(1 / T)〜(2))〜(-1)的单个函数对两个波长的光束偏差进行半经验建模,其中只有两个参数a b,其中sigma为微弧度,T为温度,单位为摄氏度。

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