New Issue: Orbital Catastrophe Ahead? Read Now

Laser Zap Determines Fruit Ripeness

The way fruit reflects and absorbs laser light may be a good measure of its progression toward peak ripeness. Christopher Intagliata reports

Illustration of a Bohr atom model spinning around the words Science Quickly with various science and medicine related icons around the text

Join Our Community of Science Lovers!


On supporting science journalism

If you're enjoying this article, consider supporting our award-winning journalism by subscribing. By purchasing a subscription you are helping to ensure the future of impactful stories about the discoveries and ideas shaping our world today.


Ever throw an avocado in a paper bag with a banana to get the avocado to ripen faster? That trick works because both of them are what’s called "climacteric" fruits. Meaning they release ethylene gas as they mature—and the gas in turn accelerates ripening. At maximum ethylene release, the fruit reaches peak ripeness: ideal taste and texture. After that, the fruit's cells begin to die, molds move in, and it rots.

So how to determine the best time for picking—and eating? Today’s high-tech farmers might sample the ethylene released by the fruit, as it sits in an airtight container. Or use a color meter, to track a fruit's progression towards "ripe color."

But now researchers have devised what might be a simpler and more scientifically accurate technique—shooting fruit with lasers. When they zapped golden delicious apples, what bounced back was a speckled pattern of black and red dots: a measure of how the fruit's cells and water absorbed and reflected the laser light. That pattern changed over time, right in step with the fruit's release of ethylene. Meaning these images could be a good proxy for ethylene measurements, and let farmers know the best time to harvest. The study is in the journal Applied Optics. [Rana Nassif et al, Detection of Golden apples’ climacteric peak by laser biospeckle measurements]

Next, the researchers hope to develop a handheld laser for farmers, so they can shoot fruit right on the tree. It remains to be seen if laser measurement of bananas will have…appeal. 

—Christopher Intagliata

[The above text is a transcript of this podcast.]

Subscribe to Support Independent Journalism

Great science journalism requires human expertise, time, effort and creativity. And it costs money. That’s why I and the journalists here at Scientific American hope you’ll join our community.

When you subscribe, you are supporting staff and freelance journalists who are passionate about telling science stories that are true, important and compelling. Our editors and reporters are often experts in their fields, which means they understand the nuances of big discoveries and can untangle the breakthroughs from the hype. With a subscription, you are also supporting rigorous fact-checking to ensure the words we publish are precise and accurate. And you’re supporting original illustrations, graphics and photos that bring you closer to an advanced laboratory, an ice sheet in Antarctica or a space mission in orbit. You’re helping us craft other types of high-quality journalism as well: Our newsletters are carefully written, edited and curated by staffers you have or will come to know and love. Our Science Quickly podcast is based on original reporting, collaboration with editors and scientists and exacting production.

Subscriptions keep this engine running so we can continue to deliver thoughtful, rigorous and independent science journalism to you. In an era of viral misinformation, this work is crucial. If you value what we do, I hope you’ll consider joining us as a subscriber

Thank you,

Jeanna Bryner, Editor in Chief, Scientific American

Subscribe