The mystery of Phaethon: Astronomers find strange blue asteroid’s surface is soaking up light

A near Earth asteroid is reflecting light in a mysterious way, astronomers have found.

Based on a new study of how Phaethon reflects light at different angles, astronomers think that its surface may reflect less light than previously thought.

They say it could be caused by a darker than expected surface, or by some unexpected material on the ‘bizarre’ body.

NASA has captured the highest-resolution images of 3200 Phaethon. It made its closest approach to Earth on Dec 16 2017 at about 6.4 million miles (10.3 million kilometers) away. Based on a new study of how Phaethon reflects light at different angles, astronomers think that its surface may reflect less light than previously thought.

PHAETHON: THE BIZARRE BLUE ASTEROID

Discovered in 1983, Phaethon has been shown to be the parent body of the Geminid meteor shower. 

Most meteor-shower parent bodies are comets, but Phaethon doesn’t show typical cometary activity. 

Instead it is an active asteroid with confirmed dust ejections. 

It also has a surprisingly blue color. 

The fact that its reflected light is strongly polarized is one more mystery surrounding this curious asteroid. 

The asteroid skimmed past Earth in 2017, and, the observations reveal a huge, mysterious void at its center.

The space rock, known as 3200 Phaethon, made its closest approach to Earth on Dec 16 at about 6.4 million miles (10.3 million kilometers) away. 

According to the space agency, this is the closest the asteroid will come to Earth until 2093.

An international team, including astronomers from the National Astronomical Observatory of Japan (NAOJ), Seoul National University, Chiba Institute of Technology, and other institutes, have now used the 1.6-m Pirka Telescope at Nayoro Observatory in Hokkaido Japan to observe the near-Earth asteroid (3200) Phaethon. 

They studied the changes in the polarization of the light it reflected at many different illumination angles. 

The results show that at some angles, the light reflected from Phaethon is the most polarized light ever observed among small bodies in the Solar System (Figure 1).

Discovered in 1983, Phaethon has been shown to be the parent body of the Geminid meteor shower. 

Most meteor-shower parent bodies are comets, but Phaethon doesn’t show typical cometary activity. 

Instead it is an active asteroid with confirmed dust ejections. 

Artist's conception of polarized light reflected by near-Earth asteroid Phaethon.The Japan Aerospace Exploration Agency’s DESTINY+ probe, scheduled to launch in 2022, will take pictures as it flies by Phaethon to help astronomers better characterize its surface geology.

Artist’s conception of polarized light reflected by near-Earth asteroid Phaethon.The Japan Aerospace Exploration Agency’s DESTINY+ probe, scheduled to launch in 2022, will take pictures as it flies by Phaethon to help astronomers better characterize its surface geology.

It also has a surprisingly blue color. 

The fact that its reflected light is strongly polarized is one more mystery surrounding this curious asteroid.

One possible explanation for the strong polarization is that the surface of Phaethon might be darker than expected. 

Asteroid surfaces are covered with loose rubble. 

When light reflected by the rough surface strikes another part of the surface and is reflected again before being reflected towards the observer, these multiple scatterings randomize the polarization. 

Dr. Ito from NAOJ, a leader of the research team explains, “If the albedo is lower than previously thought, that would reduce the effectiveness of multiple scatterings; so that strongly polarized light that has only been reflected a single time would dominate.”

Other possibilities that could reduce the effectiveness of multiple scatterings are that the rubble covering Phaethon’s surface might be composed of larger grains, or the material may be more porous than expected. 

A possible mechanism to produces large grains is sintering. 

The surface of Phaethon can be heated up to 1000 degrees Celsius during its closest passage to the Sun.

Such extreme heating can cause sintering on an asteroid’s surface, resulting in coarser grains.

The Japan Aerospace Exploration Agency’s DESTINY+ probe, scheduled to launch in 2022, will take pictures as it flies by Phaethon to help astronomers better characterize its surface geology.

 

 

 

This is an exciting mystery for the recently approved DESTINY+mission to investigate when it flies past Phaethon.

The way an object reflects light depends not only on its albedo (the percentage of light it reflects) but also on the illumination angle. 

One particular effect that scientists are interested in is how the polarization changes when sunlight reflects off the surface of an asteroid. 

Scientifically, light is referred to as electromagnetic waves; the waves create changes in the electric and magnetic fields. 

The directions of these changes can either be random or aligned. 

When the electromagnetic effects of light are aligned, the light is said to be polarized.

 

 



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