Chellappan Kishore V, Erden Erdem, Urey Hakan
Optical Microsystems Laboratory, Department of Electrical Engineering, Koç University, Istanbul, Turkey.
Appl Opt. 2010 Sep 1;49(25):F79-98. doi: 10.1364/AO.49.000F79.
After the invention of lasers, in the past 50 years progress made in laser-based display technology has been very promising, with commercial products awaiting release to the mass market. Compact laser systems, such as edge-emitting diodes, vertical-cavity surface-emitting lasers, and optically pumped semiconductor lasers, are suitable candidates for laser-based displays. Laser speckle is an important concern, as it degrades image quality. Typically, one or multiple speckle reduction techniques are employed in laser displays to reduce speckle contrast. Likewise, laser safety issues need to be carefully evaluated in designing laser displays under different usage scenarios. Laser beam shaping using refractive and diffractive components is an integral part of laser displays, and the requirements depend on the source specifications, modulation technique, and the scanning method being employed in the display. A variety of laser-based displays have been reported, and many products such as pico projectors and laser televisions are commercially available already.
在激光发明之后,在过去50年里,基于激光的显示技术取得了非常可观的进展,有商业产品正等待投放大众市场。紧凑型激光系统,如边发射二极管、垂直腔面发射激光器和光泵浦半导体激光器,是基于激光的显示器的合适候选者。激光散斑是一个重要问题,因为它会降低图像质量。通常,在激光显示器中会采用一种或多种散斑减少技术来降低散斑对比度。同样,在设计不同使用场景下的激光显示器时,需要仔细评估激光安全问题。使用折射和衍射元件进行激光光束整形是激光显示器不可或缺的一部分,其要求取决于光源规格、调制技术以及显示器中采用的扫描方法。已经报道了各种各样基于激光的显示器,并且许多产品,如微型投影仪和激光电视,已经在市场上有售。