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Universe Today

Reading the Galaxy's Past The Shape of a Black Hole Written in Rock Titan's Hidden Blanket Did Life Start When Impacts Created Vast Hydrothermal Systems in Earth's Crust? Meet REMORA: The Autonomous Space Fleet Built to Tag and Track Asteroids Watch the Moon Occult Venus in the Daytime for North America on June 17th Astrochemical Model Digs Into the Universe's Missing Sulfur Building in Space With Laser "Origami" On The Hunt For Cosmic Dawn And The Universe’s Very First Stars David Kipping Has a New Take on the Existence of Advanced Life in the Universe... and the Numbers are Not Encouraging! This is How Supermassive Black Holes Feed Themselves NASA’s Proposed EVE Mission Aims to Solve the Radius Valley Mystery Where Not to Look in the Search for ET Reading the Moon in X-rays Astronomers Find a Four-Carbon Sugar in Deep Space Why Can't the Universe Be Cyclic? Part 4: When a Good Idea Meets Bad Data Orbiting Stars Give Clues to a Quiescent Black Hole's Mass Magnetic Fields Help Binary Stars Form and Black Holes Merge A Rare Meteorite Just Revealed a Lost, Mars-Sized Planet from the Dawn of the Solar System Neptune’s Weirdest Moon Nereid Might Be the Lone Survivor of an Ancient "Moonpocalypse" Space Telescopes Are Now Overwhelmed by Satellite Trails Why Can't the Universe Be Cyclic? Part 3: The Ekpyrotic Universe and Its Bouncing Branes Catch Comet 220P McNaught in Outburst The Hidden Physics Complicating Interstellar Lightsails Student Astronomer Identifies Source of Mysterious Cosmic Signals Why Can't the Universe Be Cyclic? Part 2: The Awkward Triumph of Inflation The SETI Institute Releases Technosignature Report on 3I/ATLAS Why Can't the Universe Be Cyclic? Part 1: The Lure of the Eternal Universe A “Green” Dual-Mode Engine is About to Give CubeSats the Best of Both Worlds SETI Panel Revises Recommendations for Dealing With 'Disclosure Day' NASA Bids Farewell to MAVEN Mars Mission in Public Teleconference Astronomers Make "Live" Observation of a Nearby Protoplanetary Disk's Rotation The Cosmic Web Like You've Never Seen it Before They've Been Searching for the Milky Way's Black Hole Wind for 50 Years and Finally Found It What Happens to a Star That Captures A Primordial Black Hole? New Cloud-Detecting Method Will Help Astronomers Characterize Exoplanets Even Without A Magnetosphere, Mars Can Still Deflect Some Solar Wind The Unexpected Brightness 'Gap' in an Ancient Globular Cluster Cosmic Tryst: Venus Meets Jupiter at Dusk A Brief-ish History of SETI. Part IX: What Have We Found? A New Map of Stars Shows That the Small Magellanic Cloud is Expanding Here's Why So Many Massive Galaxies in the Early Universe Stop Forming Stars Exoplanetary Weather Watchers Find Strong Evidence of Magnetic Fields Asteroid Dirt is "Fluffier" Than We Thought Blue Origin Issues Official Statement on New Glenn Explosion Astronomers Uncover Statistical Evidence for Recoiling Supermassive Black Holes The Next-Generation Very Large Array Prototype (ngVLA) Gathers its First Light Flash-Melted Glass from Chang'e-5 Reveals a High Levels of Iron on the Moon How Early Earth's Unlikely Chemical Hero Appeared Mars Hid its Warm, Wet Crystals Underground Could the Milky Way’s Missing Mass Be Hiding in a Swarm of Interstellar Comets? Ceres’ Surface Is Much More Complex Than Previously Thought Are the JWST's Early Overrmassive Black Holes Just Normal-Range Outliers? Astrobiology's Looming Statistical Crisis The Filamentary Funnels That Form Stars How Heavy Can a Neutron Star Get? 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Something Just Passed Between Us and a Distant Star.
Mark Thompson · 2026-05-28 · via Universe Today

On the night of 18 December 2019, a star in our satellite galaxy, the Large Magellanic Cloud, briefly got brighter. Not dramatically nor explosively, just a smooth symmetrical rise and fall in brightness lasting about an hour, as though something had passed in front of it and bent its light toward us. Then it returned to normal and was never seen to vary again.

That something has been named Phoebe. And working out what it actually is turns out to be one of the most intriguing puzzles in modern astronomy. The phenomenon at the heart of the story is called gravitational microlensing and it’s one of the most elegant predictions of Einstein's general theory of relativity. When a massive compact object passes between us and a distant star, its gravity acts like a lens, briefly magnifying the star's light in a very characteristic way. The shape of the brightening is distinctive and entirely unlike anything produced by a variable star, a flare, or an asteroid.

The Large and Small Magellanic Clouds (Credit : ESO/S. Brunier) The Large and Small Magellanic Clouds (Credit : ESO/S. Brunier)

When a team of astronomers from Swinburne University in Melbourne spotted Phoebe in data from their high cadence survey of the Large Magellanic Cloud, they were in no doubt they were looking at a genuine microlensing event. The question is what exactly is Phoebe?

There are three possibilities. The first is a free floating planet, a world ejected from its solar system long ago, now wandering alone through the Galaxy. The second is the same thing, but belonging to the Large Magellanic Cloud itself rather than our own Milky Way which would make it the first extragalactic microlensing planet ever found. The third option is considerably more exotic, a primordial black hole, a microscopic black hole formed not from a collapsing star but from density fluctuations in the first fractions of a second after the Big Bang, before any stars existed at all.

The duration of the event is the critical clue and, since microlensing timescales depend on the mass of whatever is doing the lensing, the lighter the object, the faster it crosses our line of sight and the shorter the brightening lasts. At roughly 60 minutes, Phoebe sits right at the edge of what current surveys can detect. Working backwards through the physics, the team calculated its mass at approximately three times that of our Moon making it far smaller than any planet, and far too small to be any kind of stellar remnant black hole.

Gravitational microlensing of the light of a distant background star by a passing rogue exoplanet (Credit : NASA Ames/JPL-Caltech/T. Pyle) Gravitational microlensing of the light of a distant background star by a passing rogue exoplanet (Credit : NASA Ames/JPL-Caltech/T. Pyle)

Stellar black holes have a minimum mass of roughly five times that of the Sun. Phoebe is orders of magnitude below that floor. The only kind of black hole that small is one that formed in the Big Bang itself.

The team calculated the probability of the lensing object belonging to each possible population — Milky Way stars, Large Magellanic Cloud stars, or the dark matter halo between and around them. The dark matter halo wins by a factor of 100,000. Phoebe is five orders of magnitude more likely to be a dark matter object than anything associated with normal stellar matter.

If that interpretation holds, Phoebe is among the oldest objects ever detected, formed before the first stars, before the first atoms, in the violent chaos of the infant universe. Something that has been drifting silently through the dark for 13 billion years briefly announced itself by bending the light of a distant star for one hour on a December night in 2019.

Source : AMPM II. A Lunar-Mass Primordial Black Hole Microlensing Candidate in the Milky Way Halo