Showing posts with label Rainbows. Show all posts
Showing posts with label Rainbows. Show all posts

Apr 7, 2024

CHEOPS detects a 'rainbow' on an exoplanet

The CHEOPS space telescope, whose scientific operations centre is based at the University of Geneva (UNIGE), is providing new information on the mysterious exoplanet WASP-76b. This ultra-hot giant is characterised by an asymmetry between the amount of light observed on its eastern terminator -- the fictitious line that separates its night side from its day side -- and that observed on its western terminator. This peculiarity is thought to be due to a ''glory'', a luminous phenomenon similar to a rainbow, which occurs if the light from the star -- the ''sun'' around which the exoplanet orbits -- is reflected by clouds made up of a perfectly uniform substance. If this hypothesis is confirmed, this would be the first detection of this phenomenon outside our solar system. This work, carried out in collaboration with the European Space Agency (ESA) and the University of Bern (UNIBE), is published in Astronomy & Astrophysics.

WASP-76b is an ultra-hot giant planet. Orbiting its host star twelve times closer than Mercury orbits our Sun, it receives more than 4,000 times the Sun's radiation on Earth. ''The exoplanet is 'inflated' by the intense radiation from its star. So, although it is 10% less massive than our cousin Jupiter, it is almost twice as big,'' explains Monika Lendl, assistant professor in the Department of Astronomy of the UNIGE Faculty of Science, and co-author of the study.

Since its discovery in 2013, WASP-76b has been the subject of intense scrutiny by astronomers. A strangely hellish picture has emerged. One side of the planet is always facing its star, reaching temperatures of 2,400 degrees Celsius. Elements that would form rocks on Earth melt and evaporate here, before condensing on the slightly cooler night side, creating clouds of iron that drip molten iron rain.

The crucial contribution of CHEOPS

One of the most disturbing observations for astronomers is the asymmetry between the planet's two terminators. The terminator is the imaginary line that separates the day and night sides of a planet. In the case of WASP-76b, the observations show an increase in the amount of light from the terminator to the east of the planet compared with the one to the west.

To solve this mystery, astronomers used no fewer than twenty-three observations with the CHEOPS space telescope, spread over three years. The ESA satellite, which is piloted by Switzerland and has its scientific operations centre at the UNIGE Department of Astronomy, observed numerous secondary eclipses of the planet (when it passes behind its star) and several phase curves (continuous observation during a complete revolution of the planet).

Combining these new data with those from other telescopes (TESS, Hubble and Spitzer), the astronomers were able to put forward a surprising hypothesis to explain the excess luminous flux on the eastern side of the planet: ''This unexpected glow could be caused by a strong, localised and anisotropic reflection -- i.e. one that depends on direction -- what we call a glory,'' explains Olivier Demangeon, researcher at the Instituto de Astrofísica e Ciências do Espaço in Portugal and lead author of the study.

A first outside our solar system

Glories are common phenomena on Earth. They have also been observed on Venus. The effect, similar to a rainbow, occurs when light is reflected by clouds made up of perfectly uniform droplets. In the case of Earth, the droplets are made out of water, but the nature of these droplets on WASP-76b remains mysterious. It could be iron, as this has already been detected in the planet's extremely hot atmosphere. The detection of this phenomenon on WASP-76b is the first of its kind outside our solar system.

''The reason why no such glory has ever been observed outside our solar system is that this phenomenon requires very specific conditions. First of all, the atmospheric particles must be almost perfectly spherical, completely uniform and sufficiently stable to be observed throughout a long time. These droplets have to be directly illuminated by the planet's host star, and the observer -- in this case CHEOPS -- must be in the right position,'' explains Olivier Demangeon.

Results to be confirmed

Further data will be needed to confirm with certainty that this intriguing excess of light on the eastern terminator of WASP-76b is a glory. This confirmation would attest to the presence of clouds made up of perfectly spherical droplets that have existed for at least three years, or that are constantly renewing themselves. For such clouds to persist, the temperature of the atmosphere would also have to be stable over time -- a fascinating and detailed insight into what could be happening on WASP-76b.

Read more at Science Daily

Oct 31, 2022

Climate change to produce more rainbows

Climate change will increase opportunities to see rainbows, according to a new study led by researchers at the University of Hawai'i (UH) at Manoa. The study's authors estimate that by 2100, the average land location on Earth will experience about 5% more days with rainbows than at the beginning of the 21st century. Northern latitudes and very high elevations, where warming is predicted to lead to less snow and more rain, will experience the greatest gains in rainbow occurrence. However, places with reduced rainfall under climate change -- such as the Mediterranean -- are projected to lose rainbow days.

Rainbows are produced when water droplets refract sunlight. Sunlight and rainfall are therefore essential ingredients for rainbows. Human activities such as burning fossil fuels are warming the atmosphere, which changes patterns and amounts of rainfall and cloud cover.

"Living in Hawai'i, I felt grateful that stunning, ephemeral rainbows were a part of my daily life," said the lead author of the study, Kimberly Carlson, who is now at New York University's Department of Environmental Studies. "I wondered how climate change might affect such rainbow viewing opportunities."

Camilo Mora, at the UH Manoa Geography and Environment department, was intrigued by the question and pitched it as the focus of a project for one of his graduate courses.

According to Mora, "We often study how climate change directly affects people's health and livelihoods, for instance via the occurrence of heat stroke during climate change-enhanced heat waves."

However, few researchers have examined how climate change might affect the aesthetic qualities of our environment, and no one had bothered to map rainbow occurrences, much less under climate change.

To answer this question, a team including students at UH Manoa looked at photographs uploaded to Flickr, a social media platform where people share photographs. They sorted through tens of thousands of photos taken around the world, labeled with the word "rainbow," to identify rainbows generated from the refraction of light by rain droplets.

Amanda Wong, then an undergraduate student in Global Environmental Science in the UH Manoa School of Ocean and Earth Science and Technology (SOEST) and a co-author on the paper, noted, "We had to sort through photos of rainbow artwork, rainbow flags, rainbow trout, rainbow eucalyptus, and rainbow foods to find the real rainbows."

Then, the scientists trained a rainbow prediction model based on rainbow photo locations and maps of precipitation, cloud cover, and sun angle. Finally, they applied their model to predict present day and future rainbow occurrences over global land areas. The model suggests that islands are rainbow hotspots.

"Islands are the best places to view rainbows," according to Steven Businger, professor of Atmospheric Sciences in SOEST. "This is because island terrain lifts the air during daily sea breezes, producing localized showers surrounded by clear skies that let the sun in to produce majestic rainbows."

The Hawaiian Islands, recently dubbed the "rainbow capital of the world," are predicted to experience a few more days with rainbows per year. The authors stopped short of discussing how changes in rainbow occurrence might affect human wellbeing. However, rainbows are an important part of human culture throughout history and around the world and are aesthetically pleasing.

"Climate change will generate pervasive changes across all aspects of the human experience on Earth. Shifts in intangible parts of our environment -- such as sound and light -- are part of these changes and deserve more attention from researchers," said Carlson.

Read more at Science Daily