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Nonimaging optical designs for maximum-power-density remote irradiation

机译:非成像光学设计,可实现最大功率密度远距离辐射

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Designs for flexible, high-power-density, remote irradiation systems are presented. Applications include industrial infrared heating such as in semiconductor processing, alternatives to laser Light for certain medical procedures, and general remote high-brightness lighting. The high power densities inherent to the small active radiating regions of conventional metal-halide, halogen, xenon, microwave-sulfur, and related lamps can be restored with nonimaging concentrators with little loss of power. These high flux levels can then be transported at high transmissivity with light channels such as optical fibers or lightpipes, and reshaped into luminaires that can deliver prescribed angular and spatial flux distributions onto desired targets. Details for nominally two-and three-dimensional systems are developed, along with estimates of optical performance. (C) 1998 Optical Society of America. [References: 16]
机译:提出了用于灵活的高功率密度远程照射系统的设计。应用包括半导体加工中的工业红外加热,某些医疗程序的激光替代品以及一般的远程高亮度照明。常规的金属卤化物,卤素,氙,微波硫和相关的灯的小有源辐射区域固有的高功率密度可以用无成像的聚光器来恢复,而功率损失很小。然后,这些高通量水平可以通过光通道(例如光纤或光导管)以高透射率传输,并重新成型为可将规定的角度和空间通量分布传递到所需目标上的照明设备。开发了名义上的二维和三维系统的详细信息以及光学性能的估计。 (C)1998年美国眼镜学会。 [参考:16]

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