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Spencer Pratt’s time in Santa Barbara County likely won’t affect his bid for L.A. mayor, analysts say
Living outside the community they want to represent can be a handicap for political candidates, but it’s not likely to be a problem for Los Angeles mayoral hopeful Spencer Pratt, who until recently was living in Carpinteria in Santa Barbara County, analysts say.
That’s because Pratt’s home burned in the January 2025 Palisades fire, making him a sympathetic figure among many voters — especially those living in his Westside base, they say.
“I don’t think this is going to be electorally consequential,” said Zev Yaroslavsky, a former Los Angeles County supervisor and L.A. City Council member who now runs the UCLA Luskin School of Public Affairs. “He’s a victim of the Palisades fire that doesn’t have a home to live in because it burned down.”
Pratt filed to run for mayor in February and was in second place behind Mayor Karen Bass in a recent poll by the Luskin school. He was certified by the Los Angeles city clerk on March 2 as one of 14 candidates in the June 2 primary election.
While some observers have raised questions about his eligibility, a state memorandum following the fires said that voters who were temporarily displaced from their homes can use their prior address as their permanent residence as long as they “intend to return” in the future.
Los Angeles mayoral candidate Spencer Pratt currently resides in a private community in Carpinteria, Calif.
(Myung J. Chun / Los Angeles Times)
Michael Sanchez, a spokesperson for the Los Angeles County Registrar-Recorder/County Clerk, said this also applies to candidates.
“In situations where a candidate has been temporarily displaced (such as the 2025 wildfires), their eligibility to run for office is not impacted, provided they maintain domicile in their district,” Sanchez said in a statement.
He explained that domicile is determined by a person’s primary residence and their intent to return to that residence. “Temporary relocation during rebuilding or recovery does not, by itself, change a person’s domicile.”
The Times asked the L.A. city clerk’s office last week about Pratt’s residency and eligibility.
“We cannot comment on the specifics of a candidate’s address due to confidentiality. Any matter concerning a candidate’s eligibility or residency, such as this situation, can be formally challenged through the court,” said Josue Marcus, a spokesperson for the city clerk’s office.
Any potential challenge to Pratt’s eligibility based on residency would turn on the question of whether he had intent to return, said Jessica Levinson, a Loyola Marymount University law professor. “Those are tricky inquiries because it depends on someone’s state of mind,” she said.
Pratt and his campaign aides didn’t respond to requests for comment. Pratt released a video Monday, following inquiries from The Times, defending his decision to move to Carpinteria but saying he now intends to live in a trailer placed on his burned-out lot in Pacific Palisades.
The city of Los Angeles sprawls across roughly 500 square miles, creating logistical hurdles if nothing else for a candidate seeking citywide office from a remote location, noted Democratic political consultant Mike Trujillo.
“Anyone that has done the drive from San Pedro to Sylmar knows that L.A. is a big place,” said Trujillo, who isn’t affiliated with any of the candidates in the June 2 mayoral primary. “To add another hour and a half to the drive is not advantageous if you’re trying to campaign in every corner of the city.”
Pratt, a former reality TV star, has millions of followers on social media, but Trujillo said that Pratt will need to show a strong presence in the community to wage a successful campaign.
Pratt is a Republican running in a Democrat-majority city. Developer Geoffrey H. Palmer, a major campaign donor to President Trump, plans to host a reception for Pratt at his Beverly Hills home April 28, according to a document the Pratt campaign filed with the city Ethics Commission.
The event is being organized by Trey Kozacik, who also organized a Trump fundraiser in Los Angeles in 2019.
The UCLA Luskin poll released this month showed Pratt with the support of 11% of likely voters, behind Bass with 25% and ahead of City Council member Nithya Raman with 9%.
Mayoral candidate Adam Miller, who polled at 3% in the survey, said Pratt’s party affiliation is his biggest hurdle to winning the mayoral race.
“I sympathize with Spencer for losing his home and feeling outrage toward the city, but he is not a viable candidate. It doesn’t matter where he lives, a Republican hasn’t been elected mayor in 30 years in this city, and he isn’t going to change that now,” said Miller, a tech executive.
Others say party affiliation is less of an issue.
“This is a nonpartisan race,” said Roxanne Hoge, the chair of the Los Angeles County Republican Party. “There’s no letter accompanying anyone’s name. … I personally support him because he’s an intelligent alternative.”
Some think Pratt will also hold appeal for some Democratic voters.
“There are people I speak to who I know to be Democrats who really, really like him,” said Maryam Zar, who heads the Palisades Recovery Coalition. “To the extent that people are disappointed in this recovery, they pin their hopes on Spencer. That’s not a bad place for him to be.”
News
Murder trial set for driver accused of killing 4 Pepperdine students

Driving at speeds of up to 104 mph, Fraser Michael Bohm whipped around a section of Pacific Coast Highway known as Dead Man’s Curve, skidded out of control and killed four Pepperdine University sorority sisters, prosecutors allege.
In September — nearly three years since the fatal accident — he will stand trial on murder charges.
Bohm, 24, is charged with four counts of murder and four counts of vehicular manslaughter with gross negligence stemming from the Oct. 17, 2023 crash in which he swerved onto the shoulder of the westbound PCH and slammed into three parked cars and the women, who were walking nearby.
Bohm’s defense team repeatedly has argued that there is inadequate evidence to sustain murder charges against him. They claim that his alleged speeding does not meet the legal standard for implied malice, meaning to act with a conscious disregard for human life. He was not under the influence of drugs or alcohol at the time of the crash, according to his attorneys.
“The data shows fatal collisions are rare” over a 10-year period on the section of PCH where the crash took place, defense attorney Alan Jackson told the court Monday, arguing that Bohm could not have expected that death could result from his alleged speeding.
A judge rejected this line of reasoning at a November hearing and did so again Monday, moving to set a Sept. 8 trial date and a Sept. 2 pretrial hearing.
Prosecutors with the L.A. County district attorney’s office have argued that Bohm knew there were potentially life-threatening consequences to accelerating over 100 mph in the 45-mph zone of PCH where the accident took place. Los Angeles Superior Court Judge Thomas Rubinson agreed, noting in November that Bohm told investigators he knew PCH “like the back of his hand” and that two of his best friends died in high-speed crashes.
On Monday, Bohm’s defense attorneys again tried to argue that Bohm was not aware his actions carried a high probability of death and also alleged that the prosecuting team unfairly withheld evidence relating to Bohm’s cellphone and vehicle speeds.
However, Rubinson ruled that the defense team was able to acquire sufficient evidence around traffic safety, collision history and enforcement activity along PCH without having to lobby prosecutors for the data. He said there were no evidentiary violations made by the district attorney’s office.
The victims of the crash were Alpha Phi sorority sisters Niamh Rolston, 20; Peyton Stewart, 21; Asha Weir, 21; and Deslyn Williams, 21, who all received their degrees posthumously.
The tragic accident sparked renewed calls for safety improvements along the 21-mile section of PCH in Malibu, one of the deadliest roads in the state, where 63 people have died since 2010. In July 2024, one person was killed and two injured in a head-on collision along the same stretch where the Pepperdine students died.
Traffic collisions dropped precipitously in the aftermath of the 2025 Palisades fire, when the road was closed for weeks and then reopened with strict speed limits. Nonetheless, as cars returned and speeding increased, accidents resumed. In February, a pedestrian became the latest Malibu fatality along an area of PCH near Point Dume.
Times staff writer Richard Winton and City News Service contributed to this report.
News
Why Restarting a Nuclear Power Plant Can Be Much Harder Than Expected
The first U.S. attempt at reopening a shuttered reactor has been held back by run-down equipment and a lack of planning.
News
Black Hole Collisions Tell a Tale of Repeating Mergers
A black hole merger is one of the Universe’s more energetic, massive, and weird events. During such a collision, two black holes orbit closer and closer until they collide and become a much more massive black hole. The event can emit neutrinos, photons from energized gases, and, as it happens, gravitational waves. Those waves help tell the story of the two objects involved in the collision.
Recent gravitational wave detections show hundreds of such mergers in the Universe. Many probably came from collisions of black holes created when massive stars died in supernova explosions. That’s the standard story we all learn about the deaths of supermassive stars—the creation of stellar black holes. But what happens to them afterwards? Those “smaller” black holes can merge again, creating a more massive black hole. And it could happen again, making larger and more massive objects in a process called “hierarchical merging.” It’s most likely happening in very crowded regions of galaxies.
A team of scientists including MIT’s Salvatore Vitale and Cailin Plunkett, Thomas Callister of Williams College in Massachusetts, and Michael Zevin of Chicago’s Adler Planetarium, is studying gravitational wave signals to see if this pathway is legitimate. According to Plunkett, the data show some intriguing results. “We’re finding that, for some of these merging black holes, it’s not their first rodeo,” said Plunkett. “Overall in the Universe, black holes are merging all the time. The question of how often they are repeatedly merging was pretty uncertain. Now we’re seeing a relatively consistent picture where there’s a decent percentage of black holes that are coming from this repeated pathway.”
How To Tell If It’s a First Merger or Not
The clues to the provenance of black holes in a merger lie in their spins. Think of the spin of a disk around a newly forming star. It has angular momentum. Some black holes have spin; others do not. A “first-time” black hole created in a supernova event creates a black hole with little to no spin. That’s because when the progenitor star dies, it loses much of its mass as well as its own spin. The resulting black hole shouldn’t have much spin, either.
According to Vitale, the scene changes when two black holes merge. It’s a more energetic event, and the collision should result in a second-generation black hole with a definite spin. “They would be spinning very fast, at about 70 percent their maximum possible spin,” Vitale said. That spin reveals the new black hole’s lineage, from two smaller ones. So, astronomers might start out looking for a duo of black holes about to collide. If one has a very high spin rate than its dance partner, then observers are looking at a pair where one black hole came from a collision of two smaller black holes.
Some merging black holes may be second-generation black holes that formed from the previous merging of two smaller black holes, according to a new study. Here’s an artist’s concept of the hierarchical formation of black holes. Credits: Credit: LIGO/Caltech/MIT/R. Hurt (IPAC)
Where Does This Happen?
Stellar-mass black holes can happen anywhere supermassive stars are dying in supernova explosions. But hierarchical mergers likely occur in very crowded environments. These are regions where stars are packed closely together—such as in clusters. “You might have a ton of stars whizzing around each other, and if some are massive and explode, they become black holes. The black holes continue to whizz around, and can capture each other and merge,” explained Plunkett. “This process can repeat potentially ad infinitum, by virtue of the fact that you have a ton of stars and black holes in this really dense environment.”
To find evidence of hierarchical mergers, the team looked at data in the LIGO-Virgo-KAGRA Gravitational Wave Transient Catalog (GWTC-4.0). This is a collection of data tracing gravitational wave detections made during the combined observatories’ fourth observing run. They looked for signals typical of hierarchical mergers of black holes. Specifically, the team wanted to catch the action just before the merger actually happens. It’s an interesting time. The black holes are spiraling in toward each other in a disk-like orbital plane. If their spins are perpendicular to the plane, the process of merger is fairly steady. But if the spins aren’t perpendicular, the disk takes on a distinct wobble. The wobble reveals information about the balance of the masses of the two black holes and their spins.
What the Collisions Reveal
Analysis of the data revealed numerous mergers that showed orbital wobbling that was likely caused by the collisions between first-generation and second-generation black holes. Extrapolate that out to mergers throughout the Universe, and it looks like about 14 percent of merging black holes have been down the same collision road at least twice. It turns out that black holes that have masses about 10 and 30 times that of the Sun were probably stellar-mass black holes created in supernova explosions. Interestingly, those of 20 and 40 solar masses (and above) were most likely to be second-generation black holes made from collisions of previous black holes.
How does that play out with the evolutionary story of the supermassive stars that form black holes? Plunkett points out that the violence of the supernova explosions may play a role. “One of the reasons why the 40-and-above regime is interesting is, stellar evolution theory predicts you shouldn’t be able to form black holes in that mass range at all from just a supernova,” Plunkett said. “We think supernovae from really massive stars end up being so violent that they leave no black holes at all above roughly 45 solar masses. Yet, we have seen black holes that are that massive. And the question is: Where did they come from?”
That’s a question that remains to be answered. In the meantime, this hierarchical merging of black holes over time may well explain some of the weirder black holes astronomers have discovered. Linking the black-hole mass spectrum to features in the spin distribution is a good way to identify the history of potential merger candidates as well as to understand the characteristics of existing black holes that exhibit strange spins. In the long run, studies of these characteristics will help astronomers tell the story of black hole evolution across the Universe.
For More Information
Many Black Holes Had Past Lives New Research Shows
Signatures of a Subpopulation of Hierarchical Mergers in the GWTC-4 Gravitational-Wave Dataset
Signatures of a Subpopulation of Hierarchical Mergers in the GWTC-4 Gravitational-Wave Dataset
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