Conventional incandescent lightbulbs reach the 3000 K needed to emit in the visible range thanks to ohmic heating of a resistive tungsten filament. That process is extremely inefficient at producing light, though, because most of the spectrum of a 3000 K blackbody lies in the IR. Tailoring the spectrum by suppressing all but the wavelengths of interest can avoid the wasted energy. To that end, MIT researcher Ognjen Ilic, his postdoctoral adviser Marin Soljačić, and their colleagues surrounded the filament with interference filters that transmit visible light but reflect the IR. The idea of recycling unwanted IR emission to provide an additional source of heat to the filament isn’t new. Two features distinguish the team’s implementation: First, unlike earlier filters, which were designed for a single incidence angle, the MIT filters are made of thin layers of common oxides—ranging from the low-refractive-index silica to the high-index titania—that are effective over...
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1 March 2016
March 01 2016
Citation
R. Mark Wilson; Recycling light. Physics Today 1 March 2016; 69 (3): 20. https://doi.org/10.1063/PT.3.3099
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