Astronauts who have been fortunate enough to travel to space more than once in the last decade are privileged witnesses of a  chromatic change  on a planetary scale. From their vantage point 400 kilometers high, they have been able to see that the cities, previously faint spots of amber, now shine with an  intense white light .

It’s not a metaphor. This change represents the visible trace of one of the most rapid and widespread infrastructure transformations in recent history: the  great replacement of public lighting . We have retired the old sodium vapor streetlights and massively embraced LED technology. This change, driven by regulations in favor of  energy efficiency , has redrawn the night map of the Earth, a phenomenon that can be seen more clearly from space.

The invention that earned a Nobel Prize in Physics. Old sodium vapor lamps, especially low-pressure ones, were  monochromatic  in nature. They emitted light in a very narrow band of the spectrum, resulting in that characteristic and ubiquitous yellow-orange hue that tinted our streets and skies. On the contrary,  LED lights  work in a completely different way.

The breakthrough that earned Isamu Akasaki, Hiroshi Amano, and Shuji Nakamura the 2014  Nobel Prize in Physics  was the invention of the  high-efficiency blue LED . By combining this blue LED with a phosphor coating, it became possible to generate a bright and affordable white light. This diode is not only more efficient, exceeding  300 lumens per watt , compared to only  16 for an incandescent bulb , but it also offers a much broader spectrum of light.

Southern Europe from the International Space Station
Southern Europe from the International Space Station
Southern Europe in 2025 from the International Space Station. Image: Don Pettit

The cities changed color. To the eyes of a night observer in space, cities have transitioned from yellow to a glowing  bluish white . Milan serves as a paradigmatic case: it completed its transition to LED in 2015 and appears in an  ESA comparison  with before-and-after photos taken by astronauts André Kuipers and Samantha Cristoforetti. However, it is by no means the only case.

Los Angeles was a pioneering city, having ordered the replacement of  140,000 streetlights  back in 2009. Buenos Aires modernized its lighting with smart LED streetlights between 2013 and 2016. New York finished replacing  500,000 bulbs  in 2023. Barcelona plans to achieve total remote management of public lighting by 2028. Interestingly,  India  has the largest replacement program in the world, with over  13 million LED streetlights  already installed.

The B-side of this transformation. Like every revolution, the LED revolution has a  dark side . Light is cheaper, so cities are not only replacing old streetlights but also increasing the number of light points or their intensity. As a result, we find ourselves with a  brighter planet , making it more challenging to escape from  light pollution .

Statistics may suggest otherwise, but it’s crucial to understand that light pollution is measured by satellites, which are partially blind to blue light. Consequently, the actual increase in light pollution, especially that which is perceived by human beings, is much higher than official figures indicate. Furthermore, blue light significantly interferes with our  biological clock , affecting sleep quality and disorienting migratory birds and moths.

The future is adjustable. The solution does not lie in reverting to sodium. The efficiency of LEDs is indisputable. The key, as with any technology, is in its  application . The next phase of this transition is not about merely swapping out bulbs but installing  smart streetlights . It is estimated that nearly one in four streetlights will be smart by 2030. When connected, they can regulate their lumen intensity based on factors such as time of day or traffic conditions, detect failures in real time, and even collect  environmental data .

This remote management will allow one of the new lighting principles to be enacted: using only the necessary light when and where it is needed. Concurrently, innovative solutions have emerged to protect biodiversity, such as streetlights with  red light , which are currently being tested in Nordic cities to avoid disturbing mammals like bats. Furthermore, ideas surrounding  bioluminescence  as an organic source of light generation continue to gain traction, promising minimal environmental impact without any electricity consumption.



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