Nobel Physics Prize Awarded to 3 Scientists for Proving Einstein’s ‘Gravitational Waves’ Theory

The 2017 Nobel Prize in Physics went to three scientists for their discoveries on gravitational waves that were theorized by Einstein a hundred years ago. (Getty Images)
The 2017 Nobel Prize in Physics went to three scientists for their discoveries on gravitational waves that were theorized by Einstein a hundred years ago. (Getty Images)
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Nobel Physics Prize Awarded to 3 Scientists for Proving Einstein’s ‘Gravitational Waves’ Theory

The 2017 Nobel Prize in Physics went to three scientists for their discoveries on gravitational waves that were theorized by Einstein a hundred years ago. (Getty Images)
The 2017 Nobel Prize in Physics went to three scientists for their discoveries on gravitational waves that were theorized by Einstein a hundred years ago. (Getty Images)

Three scientists, whose discoveries on gravitational waves, have been awarded the 2017 Nobel Physics Prize.

Rainer Weiss of the Massachusetts Institute of Technology and Barry Barish and Kip Thorne of the California Institute of Technology are the recipients of the award, announced by Sweden's Royal Academy of Sciences on Tuesday.

Their discoveries in faint ripples flying through the universe called gravitational waves came as proof of a theory developed by Albert Einstein a century ago. Scientists say this fundamentally alters our understanding of the universe.

The three were key to the first observation of gravitational waves in September 2015.

When the discovery was announced several months later, it was a sensation not only among scientists but the general public.

"It's a win for the human race as a whole. These gravitational waves will be powerful ways for the human race to explore the universe," Thorne told The Associated Press in a phone interview.

Weiss said he hopes that eventually gravitational waves will help science learn about "the very moment when the universe came out of nothingness."

"The best comparison is when Galileo discovered the telescope, which allowed us to see that Jupiter had moons and all of a sudden we discovered that the universe was much vaster than we used to think about. With this discovery we can study processes which were completely impossible, out of reach to us in the past," said Ariel Goobar of the Royal Swedish Academy of Sciences.

With the technology that the three developed "We may even see entirely new objects that we haven't even imagined yet," said Patrick Sutton, an astronomer at Cardiff University in Wales.

Gravitational waves are extremely faint ripples in the fabric of space and time, generated by some of the most violent events in the universe.

The waves detected by the laureates came from the collision of two black holes some 1.3 billion light-years away. A light-year is about 5.88 trillion miles.

The waves were predicted by Einstein a century ago as part of his theory of general relativity. General relativity says that gravity is caused by heavy objects bending space-time, which itself is the four-dimensional way that astronomers see the universe.

The German-born Weiss was awarded half of the 9-million-kronor ($1.1 million) prize amount and Thorne and Barish will split the other half.

Weiss in the 1970s designed a laser-based device that would overcome background noise that would disturb measurements of gravitational waves. He, Thorne and Barish "ensured that four decades of effort led to gravitational waves finally being observed," the Nobel announcement said.

The announcement said Einstein was convinced that gravitational waves could never be measured. The laureates used laser devices "to measure a change thousands of times smaller than an atomic nucleus."
In a moment of poetry aimed at making the distant and infinitesimal phenomenon understandable to non-experts, the academy announcement said gravitational waves "are always created when a mass accelerates, like when an ice-skater pirouettes or a pair of black holes rotate around each other."

The waves are like "a storm in the fabric of space-time that is produced when two black holes collide," Thorne said. The first detection came from a crash 1.3 billion light-years away. A light-year is about 5.88 trillion miles.

The prize is "a win for Einstein, and a very big one," Barish told the AP.

For the past 25 years, the physics prize has been shared among multiple winners.

Last year's prize went to three British-born researchers who applied the mathematical discipline of topology to help understand the workings of exotic matter such as superconductors and superfluids. In 2014, a Japanese and a Canadian shared the physics prize for studies that proved that the elementary particles called neutrinos have mass.

The 2017 Nobel prizes kicked off Monday with the medicine prize being awarded to three Americans studying circadian rhythms — better known as body clocks: Jeffrey C. Hall, Michael Rosbash and Michael W. Young.



Video Shows Dolphin Calf Birth and First Breath at Chicago Zoo

This photo provided by Brookfield Zoo Chicago,  bottlenose dolphins "Allie" with "Tapeko" are joined by the newly born calf at the Brookfield Zoo Chicago on Saturday, June 7, 2025. (Brookfield Zoo Chicago via AP)
This photo provided by Brookfield Zoo Chicago, bottlenose dolphins "Allie" with "Tapeko" are joined by the newly born calf at the Brookfield Zoo Chicago on Saturday, June 7, 2025. (Brookfield Zoo Chicago via AP)
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Video Shows Dolphin Calf Birth and First Breath at Chicago Zoo

This photo provided by Brookfield Zoo Chicago,  bottlenose dolphins "Allie" with "Tapeko" are joined by the newly born calf at the Brookfield Zoo Chicago on Saturday, June 7, 2025. (Brookfield Zoo Chicago via AP)
This photo provided by Brookfield Zoo Chicago, bottlenose dolphins "Allie" with "Tapeko" are joined by the newly born calf at the Brookfield Zoo Chicago on Saturday, June 7, 2025. (Brookfield Zoo Chicago via AP)

A bottlenose dolphin at a Chicago zoo gave birth to a calf early Saturday morning with the help of a fellow mom, in a successful birth recorded on video by zoo staff.

The dolphin calf was born at Brookfield Zoo Chicago early Saturday morning as a team of veterinarians monitored and cheered on the mom, a 38-year-old bottlenose dolphin named Allie.

“Push, push, push,” one observer can be heard shouting in video released by the zoo Saturday, as Allie swims around the tank, the calf’s little tail fins poking out below her own, The Associated Press reported.

Then the calf wriggles free and instinctively darts to the surface of the pool for its first breath. Also in the tank was an experienced mother dolphin named Tapeko, 43, who stayed close to Allie through her more than one hour of labor.

In the video, she can be seen following the calf as it heads to the surface, and staying with it as it takes that first breath.

It is natural for dolphins to look out for each other during a birth, zoo staff said.
“That’s very common both in free-ranging settings but also in aquaria,” said Brookfield Zoo Chicago Senior Veterinarian Dr. Jennifer Langan in a video statement. “It provides the mom extra protection and a little bit of extra help to help get the calf to the surface to help it breath in those couple minutes where she’s still having really strong contractions.”

In a written statement, zoo officials said early signs indicate that the calf is in good health. They estimate it weighs around 35 pounds (16 kilograms) and stretches nearly four feet in length (115-120 centimeters). That is about the weight and length of an adult golden retriever dog.

The zoo’s Seven Seas exhibit will be closed as the calf bonds with its mother and acclimates with other dolphins in its group.

As part of that bonding, the calf has already learned to slipstream, or draft alongside its mother so that it doesn’t have to work as hard to move. Veterinarians will monitor progress in nursing, swimming and other milestones particularly closely over the next 30 days.