A recently detected asteroid will pass relatively close to Earth this Monday, attracting the interest of astronomers and space agencies worldwide. Even with the narrow cosmic distance, experts stress that the object poses no risk to the planet and will proceed safely along its trajectory through space.
Astronomers are closely monitoring an asteroid identified as 2026JH2, a rocky object that will pass near Earth at a distance of approximately 91,593 kilometers, or about 56,900 miles. According to calculations from the European Space Agency, the object will travel at roughly one quarter of the average distance between Earth and the moon, making it one of the closest asteroid flybys recorded this year. Even so, scientists insist there is no risk of collision or atmospheric impact.
The asteroid was first detected on May 10 by researchers working with the Mount Lemmon Survey in Tucson, Arizona, one of several programs dedicated to identifying near-Earth objects. After its discovery, the object received the official designation 2026JH2 and was classified as part of the Apollo group of asteroids, a category known for following orbital paths that intersect Earth’s orbit around the sun.
NASA’s Jet Propulsion Laboratory estimates that the asteroid will make its closest pass shortly before 6 p.m. Eastern Time. While that distance may appear alarmingly close from a human perspective, astronomers note that such flybys are relatively common within the broader scale of the solar system.
Why experts believe there is nothing to worry about
Planetary scientists have reassured the public that the asteroid will safely miss Earth. Richard Binzel, a professor at the Massachusetts Institute of Technology and creator of the Torino Scale used to classify asteroid impact risks, explained that objects of similar size frequently pass between Earth and the moon without causing any issues.
Binzel notes that asteroids roughly the size of a car or small bus regularly move through Earth’s celestial vicinity, and what distinguishes the situation today is that enhanced detection technologies now let astronomers identify many of these objects that would previously have escaped notice.
At its closest pass, 2026JH2 will remain well beyond the altitude range where numerous geosynchronous satellites operate to support telecommunications, weather forecasting, and broadcasting, and specialists highlight that the object’s trajectory has been rigorously examined and does not intersect Earth’s orbit.
Experts believe the asteroid originated in the main asteroid belt between Mars and Jupiter, a region where collisions among rocky objects and Jupiter’s gravitational influence have long been known to push fragments inward, sending material into the inner solar system and giving rise to many of the near-Earth asteroids that astronomers track today.
Although the current flyby is harmless, the event highlights the importance of continuous observation programs designed to identify potentially hazardous objects before they become a concern.
The challenge of determining an asteroid’s exact size
Despite direct observations of 2026JH2, astronomers remain unable to pin down its exact size, with current scientific assessments placing its diameter somewhere between 15 and 30 meters, a range comparable to one or two school buses, yet this approximation stays ambiguous because telescopes that operate in visible light only register the object’s brightness.
Patrick Michel, an astrophysicist and research director at France’s National Centre for Scientific Research, explained that an asteroid’s brightness is not a reliable measure of its size, as a large yet low‑albedo object may appear faint, whereas a smaller, highly reflective one can seem much more luminous.
To accurately calculate dimensions, astronomers ideally require infrared observations, which allow them to measure heat emissions more directly linked to an object’s physical size. However, infrared observations are more difficult to conduct from Earth and are not typically part of the initial discovery process for near-Earth objects.
Scientists compare the lower end of 2026JH2’s estimated size range to the meteor that exploded over Chelyabinsk, Russia, in 2013. That event generated a shockwave that shattered windows and injured more than 1,000 people. At the higher end of the estimate, the asteroid could resemble the object associated with the 1908 Tunguska event in Siberia, which flattened vast areas of forest.
Researchers emphasize, though, that these comparisons speak only to size and not to danger, as 2026JH2 is not anticipated to pass into Earth’s atmosphere. Its path keeps it safely distant from the planet, eliminating any possibility of an airburst or impact.
Tracking asteroids in the years ahead continues to be vital
Although scientists are confident that 2026JH2 poses no current threat, experts acknowledge that predicting the long-term movement of asteroids remains a complex challenge. Orbital paths can gradually change over time due to gravitational interactions with planets and other celestial bodies.
Michel observed that although long-term trajectories can never be predicted with absolute certainty, current analyses indicate that no known asteroid poses a meaningful impact threat within the next hundred years. Planetary defense teams persistently track thousands of near-Earth objects to identify any potential shifts in their orbits.
The close flyby occurs at a time when planetary radar assets are far more limited than in past years. Jean-Luc Margot, a professor of planetary sciences at the University of California, Los Angeles, explained that the 2020 collapse of the Arecibo Observatory drastically reduced the scientific community’s radar observation capacity, and NASA’s Goldstone radar facility is also currently undergoing major repairs.
Without radar data, astronomers face greater challenges in pinpointing the exact shape, rotation, and trajectory of nearby asteroids, and although optical telescopes provide valuable information, radar instruments allow scientists to develop far more precise representations of an object’s movement and physical properties.
Margot noted that astronomers have detected only a limited number of near-Earth asteroids comparable in size to 2026JH2. Since many of these bodies are quite dim and compact, they typically come to light just days before their closest flybys, becoming visible only when their brightness finally reaches the threshold of survey telescopes.
Space agencies and scientific organizations, compelled by this limitation, have expanded their funding for asteroid detection and tracking programs, and upcoming observatories together with more sophisticated sky surveys are expected to significantly elevate discovery rates in the next few years, giving researchers the means to assemble a far more thorough inventory of nearby objects.
Apophis expected to provide a historic sky event
As 2026JH2 gains notice for its near approach, astronomers are turning their focus to an even more extraordinary event set for 2029, when a much larger asteroid called Apophis is projected to sweep past Earth at an even closer distance on April 13 of that year.
Scientists estimate that Apophis will travel within approximately 32,000 kilometers of Earth, a distance closer than some satellites orbiting the planet. Despite the dramatic proximity, astronomers say there is no cause for alarm and instead describe the event as a unique scientific opportunity.
The flyby of Apophis is expected to become one of the most closely observed asteroid encounters in modern history. Unlike 2026JH2, which will remain invisible to the naked eye, Apophis should be visible from parts of Europe, Africa, and the Middle East without the aid of telescopes.
Events like these offer researchers valuable opportunities to study asteroid composition, movement, and structure while refining planetary defense strategies. Each close approach improves scientific understanding of how these objects behave and how humanity could respond if a future asteroid ever posed a genuine threat.
For now, astronomers note that the arrival of 2026JH2 mainly highlights how constantly Earth’s cosmic surroundings shift. Small asteroids travel through the solar system on a regular basis, and with advancing technology, scientists are growing ever more adept at detecting them well before they make close approaches.
A live broadcast of the asteroid’s approach is set to stream through the Virtual Telescope Project from its observatories in Italy, offering astronomy enthusiasts around the world a real-time view of the event as it happens. Although the asteroid will remain far too dim for most people to detect unaided, its nearby transit continues to fuel widespread curiosity about the countless bodies silently traveling through the expanse of space surrounding Earth.