NASA Gears Up to Deflect Asteroid, in Key Test of Planetary Defense

NASA globe stands near the entrance to the Kennedy Space Center Visitor Complex Sunday, July 29, 2018, in Cape Canaveral, Fla. (Phelan M. Ebenhack via AP) (Phelan M. Ebenhack / AP)
NASA globe stands near the entrance to the Kennedy Space Center Visitor Complex Sunday, July 29, 2018, in Cape Canaveral, Fla. (Phelan M. Ebenhack via AP) (Phelan M. Ebenhack / AP)
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NASA Gears Up to Deflect Asteroid, in Key Test of Planetary Defense

NASA globe stands near the entrance to the Kennedy Space Center Visitor Complex Sunday, July 29, 2018, in Cape Canaveral, Fla. (Phelan M. Ebenhack via AP) (Phelan M. Ebenhack / AP)
NASA globe stands near the entrance to the Kennedy Space Center Visitor Complex Sunday, July 29, 2018, in Cape Canaveral, Fla. (Phelan M. Ebenhack via AP) (Phelan M. Ebenhack / AP)

NASA on Monday will attempt a feat humanity has never before accomplished: deliberately smacking a spacecraft into an asteroid to slightly deflect its orbit, in a key test of our ability to stop cosmic objects from devastating life on Earth.

The Double Asteroid Redirection Test (DART) spaceship launched from California last November and is fast approaching its target, which it will strike at roughly 14,000 miles per hour (23,000 kph), AFP said.

To be sure, neither the asteroid moonlet Dimorphos, nor the big brother it orbits, called Didymos, pose any threat as the pair loop the Sun, passing some seven million miles from Earth at nearest approach.

But the experiment is one NASA has deemed important to carry out before an actual need is discovered.

"This is an exciting time, not only for the agency, but in space history and in the history of humankind quite frankly," Lindley Johnson, a planetary defense officer for NASA told reporters in a briefing Thursday.

If all goes to plan, impact between the car-sized spacecraft, and the 530-foot (160 meters, or two Statues of Liberty) asteroid should take place at 7:14pm Eastern Time (2314 GMT), and can be followed on a NASA livestream.

By striking Dimorphos head on, NASA hopes to push it into a smaller orbit, shaving ten minutes off the time it takes to encircle Didymos, which is currently 11 hours and 55 minutes -- a change that will be detected by ground telescopes in the days that follow.

The proof-of-concept experiment will make a reality what has before only been attempted in science fiction -- notably films such as "Armageddon" and "Don't Look Up."

- Technically challenging -
As the craft propels itself through space, flying autonomously for the mission's final phase like a self-guided missile, its main camera system, called DRACO, will start to beam down the very first pictures of Dimorphos.

"It's going to start off as a little point of light and then eventually it's going to zoom and fill the whole entire field of view," said Nancy Chabot of Johns Hopkins Applied Physics Laboratory (APL), which hosts mission control in a recent briefing.

"These images will continue until they don't," added the planetary scientist.

Minutes later, a toaster-sized satellite called LICIACube, which separated from DART a couple of weeks earlier, will make a close pass of the site to capture images of the collision and the ejecta -- the pulverized rock thrown off by impact.

LICIACube's picture will be sent back in the weeks and months that follow.

Also watching the event: an array of telescopes, both on Earth and in space -- including the recently operational James Webb -- which might be able to see a brightening cloud of dust.

Finally, a full picture of what the system looks like will be revealed when a European Space Agency mission four years down the line called Hera arrives to survey Dimorphos's surface and measure its mass, which scientists can only guess at currently.

- Being prepared -
Very few of the billions of asteroids and comets in our solar system are considered potentially hazardous to our planet, and none in the next hundred or so years.

But "I guarantee to you that if you wait long enough, there will be an object," said Thomas Zurbuchen, NASA's chief scientist.

We know that from the geological record -- for example, the six-mile wide Chicxulub asteroid struck Earth 66 million years ago, plunging the world into a long winter that led to the mass extinction of the dinosaurs along with 75 percent of species.

An asteroid the size of Dimorphos, by contrast, would only cause a regional impact, such as devastating a city, albeit with a greater force than any nuclear bomb in history.

Scientists are also hoping to glean valuable new information that can inform them about the nature of asteroids more generally.

How much momentum DART imparts on Dimorphos will depend on whether the asteroid is solid rock, or more like a "rubbish pile" of boulders bound by mutual gravity, a property that's not yet known.

We also don't know its actual shape: whether it's more like a dog bone or a donut, but NASA engineers are confident DART's SmartNav guidance system will hit its target.

If it misses, NASA will have another shot in two years' time, with the spaceship containing just enough fuel for another pass.

But if it succeeds, then it's a first step towards a world capable of defending itself from a future existential threat, said Chabot.



Japan's Grand Tea Master Sen Genshitsu Reportedly Dies at 102

This photo taken on April 9, 2013 shows Sen Genshitsu, former head of the "Urasenke" school of tea ceremony, performing a tea offering during a visit to the US Capitol in Washington, D.C. (Photo by JIJI Press / AFP) / Japan OUT
This photo taken on April 9, 2013 shows Sen Genshitsu, former head of the "Urasenke" school of tea ceremony, performing a tea offering during a visit to the US Capitol in Washington, D.C. (Photo by JIJI Press / AFP) / Japan OUT
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Japan's Grand Tea Master Sen Genshitsu Reportedly Dies at 102

This photo taken on April 9, 2013 shows Sen Genshitsu, former head of the "Urasenke" school of tea ceremony, performing a tea offering during a visit to the US Capitol in Washington, D.C. (Photo by JIJI Press / AFP) / Japan OUT
This photo taken on April 9, 2013 shows Sen Genshitsu, former head of the "Urasenke" school of tea ceremony, performing a tea offering during a visit to the US Capitol in Washington, D.C. (Photo by JIJI Press / AFP) / Japan OUT

Sen Genshitsu, a would-be kamikaze pilot who became a Japanese tea ceremony master preparing cups of matcha for world leaders and monarchs, died aged 102 on Thursday, reports said.

With a motto of "peacefulness through a bowl of tea", Kyoto-born Sen used ancient "Urasenke" tea tradition rituals to spotlight his anti-war messages.

The United Nations headquarters in New York and the USS Arizona Memorial in Pearl Harbor, Hawaii -- the scene of a devastating Japanese attack that brought the US into World War II -- were among the locations for his ceremonies.

His death was reported by major Japanese media, including the national broadcaster NHK and the top-selling newspaper Yomiuri Shimbun.

AFP could not immediately reach the Urasenke school for comment.

Born in 1923, Sen went through training as a young man to become a kamikaze pilot in World War II, but the fighting ended before he had to carry out a suicidal mission.

He later told how he used to serve tea to his fellow soldiers during military training.

In a 2023 interview with NHK, Sen stressed the calming effects of tea culture.

"A bowl of tea makes spirits very peaceful. When everyone is peaceful, there will be no war," he said.

An ordained Zen monk, Sen became the 15th-generation grand master of the Urasenke school in 1964 following the death of his father who had previously headed the tradition.

He offered tea to monarchs and presidents including Britain's Queen Elizabeth II and Soviet leader Mikhail Gorbachev, and counted the former US secretary of state Henry Kissinger and former Chinese president Hu Jintao as friends.

He said that his wartime experience had helped shape his views on the importance of peace.

In 1997, he received the Order of Culture in Japan and in 2020, he was given the Legion of Honor, France's most prestigious order of merit.