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U.S. citizen who was trapped in Iran for a year is home, lawyer says

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A U.S.-Iran dual citizen who was trapped in Iran on allegations of espionage and collaborating with a hostile state has departed the country earlier this week and is now back in the United States, according to her lawyer. 

The woman, Dena Karari, had been unable to leave Iran since December 2024 due to “bogus charges,” her attorney, Jared Genser, wrote on social media earlier this week. Genser announced late Wednesday that Karari is now free, writing that she is “safe and traveling back to the United States.”

On Sunday morning, Genser posted that Kenari was back in the United States. 

“THANK YOU to all who made this day possible, known and unknown,” he wrote. His post included a photo of Kenari at an airport, draped in an American flag. 

Karari was under an exit ban, which means that Iranian authorities refused to let her leave the country, but did not have her imprisoned.

She was never formally charged by Iran. Although her coercive exit ban expired in April, Iran did not allow her to exit at the time. 

She suffered a heart attack on July 8, two sources told CBS News. 

Two sources said Karari’s name was on a list of Americans that the U.S. State Department had given to U.S. special envoy Steve Witkoff — who is helping to lead U.S.-Iran diplomacy — to press for her release.

President Trump wrote on Truth Social earlier Wednesday that Iran had released a U.S. citizen, but he did not identify the person.

“She is now safely outside of Iran, and in good condition,” Mr. Trump said. “The United States of America appreciates this gesture of Goodwill by Iran.”

The State Department declined to comment on the situation. 

Several Americans are imprisoned in Iran, two of whom have been legally designated as wrongfully detained: Kamran Hekmati and Reza Valizadeh. The State Department can label U.S. nationals as “wrongfully detained” based on multiple criteria, including credible evidence of their innocence or reports that they are being held to extract concessions from the U.S. government.

Last month, CBS News obtained a recording of Valizadeh, an Iranian American journalist, pleading for his release from inside Tehran’s notorious Evin Prison.

The release of detained Americans was not part of the memorandum of understanding signed by the U.S. and Iran last month, which extended the two countries’ ceasefire for 60 days. Fighting between the two sides has resumed over the last week.

A mission to save NASA’s falling observatory spun out of control. What happens next

(CNN) — A daring mission to rescue one of NASA’s crucial space observatories from falling to Earth has encountered issues of its own — but there may still be hope for both spacecraft to beat the odds.The Neil Gehrels Swift Observatory has served as an astrophysics multitool in low-Earth orbit since it launched nearly 22 years ago, acting as NASA’s first responder in space when celestial objects flare with activity, according to mission scientists.But atmospheric drag intensified by solar activity exerted its forces on the observatory. Without any intervention, Swift is likely to reenter our planet’s atmosphere this fall once it sinks below an optimal altitude of about 185 miles (300 kilometers) above Earth, according to NASA’s predictions.The agency selected Arizona-based Katalyst Space Technologies to design, build, test and launch — all in the span of just nine months — a spacecraft capable of rendezvousing with Swift and boosting its orbit.The robotic satellite, named LINK, launched on July 3. It lifted off on a Northrop Grumman Pegasus XL rocket, which was released midair by the company’s modified L-1011 aircraft, Stargazer.Everything appeared to go according to plan until LINK began to spin in space around July 25, causing a temporary loss of communications, Katalyst and NASA said on July 28.While LINK’s spin now appears to be largely under control, the satellite’s rendezvous with Swift is facing a delay. Now, it remains unclear whether LINK will reach the observatory in time.“I think one of the difficult things to convey is how amazing it is that we’ve gotten this far,” said Shawn Domagal-Goldman, division director of astrophysics at NASA, during a June 17 news conference. “Even if everyone does everything perfectly, there still might be risks that we cannot control ahead of us. I’m just deeply thankful that we’re even giving this a go.”Here’s everything that has happened so far.A tumble in the timelineAfter LINK’s successful launch into orbit, Katalyst’s mission operations team confirmed it was in communication with the satellite.Katalyst’s original plan included a few weeks of health checks for LINK’s navigation and sensors in space.Both Katalyst and NASA reported about a week after launch that commissioning was going according to plan. The satellite had deployed its solar arrays and was firing its thrusters.Katalyst said on July 13 that LINK was halfway through the activation phase. Two days later, NASA posted a similar update but also said the team had run into some issues.“The Katalyst team also quickly addressed early communications and attitude control issues seen during flight operations, including an issue with one of the spacecraft’s three reaction wheels,” according to NASA’s post on July 15. “After identifying the cause, they implemented flight software patches and operational updates that restored reliable communications and stable attitude control.”Katalyst said over a week later that the team was validating LINK’s performance, and the spacecraft was preparing for its upcoming rendezvous with Swift. Part of the process included increasing the duration of the satellite’s thruster burns to get ready for the multi-hour firings needed while grappling the observatory.But on July 28, the company said LINK had been in a multi-axis spin for three days.“Preliminary investigation shows that two of LINK’s three reaction wheels currently are not operable, and there is some loss of functionality in its cold gas thruster system,” NASA shared in a post that day, adding that Katalyst had a plan to reduce the spin and would reassess any plans related to Swift.Two days later, Katalyst provided an update that the team had reduced LINK’s spin rate from about 9 degrees per second to 4 degrees per second using a series of thruster burns.“Teams also further evaluated LINK’s functionality and determined there are still potential paths forward for a boost,” NASA shared in a post on July 31. “NASA is working closely with Katalyst to consider revised, innovative approaches.”Now, Katalyst has confirmed it is making progress with LINK to restore its original mission to save Swift. The mission team has curbed the spacecraft’s spin rate to 1.47 degrees per second. LINK will maintain this rotation speed while the team prepares for its next steps, the company said on Wednesday.“The team used one of LINK’s electric propulsion thrusters to slow the spacecraft down, consuming less than 100 grams of propellant to conserve fuel for the rendezvous and boost phase of the mission,” Katalyst said in its post.The mission team plans to send a flight software update that will restore LINK’s orientation in space and allow for the maneuvers necessary to align the satellite’s orbit with that of the observatory.A risky rescue missionOriginally, LINK was expected to conduct a survey of Swift, presumably at the end of July, to determine the best grappling points on the observatory, but that’s now expected to happen a month later.After securing Swift in its grasp, LINK will carefully fire its three ion thrusters, aiming to boost the observatory back to its original orbit over the course of two to three months.It’s unclear how the delay will impact the original plans for the mission, but prior to the satellite’s launch, members of the Swift and LINK teams both acknowledged that the path to boosting the observatory was full of risks that could cause the mission to fail.“All of this is challenging and risky,” said Kieran Wilson, principal investigator for LINK at Katalyst, during a June 17 news conference. “There’s a lot of spacecraft that have had far longer development cycles with far more funding behind them that have failed for mundane reasons.”Named for fast-flying swift birds due to its ability to pivot rapidly to peer at cosmic events and afterglows, the telescope has enabled the study of comets, gravitational waves and black holes over long periods of time.With no plans on the horizon for a telescope that has Swift’s unique capabilities, NASA decided it was more cost-effective to try to save the observatory. To prevent a drainage of power, Swift isn’t currently making science observations, but that could change this fall if LINK is successful.The-CNN-Wire™ & © 2026 Cable News Network, Inc., a Warner Bros. Discovery Company. All rights reserved.
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