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激光光源/激光器

激光光源与传统照明光源不同,因为激光光源会产生相干光线。照明光谱通常很窄,其谱线宽度只有几十兆赫兹,发散性低于毫弧度级别。可以在自由空间内使用激光,采用传统光学元件对其进行偏转,或者将光源耦合到光纤中。在光纤耦合方向,发射光纤头位于光束传输位置,从而降低了对偏转光学元件的需求。对激光器进行光纤耦合时,会产生锥形光而不是平行光。

FAQ(s)

  

Why does the polarization of a laser matter?

Polarization refers to the direction with which the electric field of light waves oscillate, which is perpendicular to the direction of propagation. Light waves can be linearly, circularly, elliptically, or randomly polarized. For more information about polarization read Introduction to Polarization.

Laser sources may be polarized due to anisotropy (a material property that is different in different directions) in the laser gain material, directionally dependent polarization losses in the laser resonator, or the use of birefringent optical materials. Some laser sources are unpolarized (e.g. fiber lasers). The polarization state of a laser can also be used to reduce unwanted and potentially dangerous reflection from high-power sources as some materials reflect or absorb light in certain polarizations states over others.

Many laser applications including some interferometry, optical amplification and modulation, nonlinear frequency conversion, and incoherent and coherent polarization beam combining (polarization coupling), depend on the state of polarization in order to function.

 
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