Comparison between the astronomical images of IRAS 18293-0941 (left) and the artist's impression (right). (Image credit: B. Marcote (JIVE/ASTRON).)These objects, as well as microquasars in general, are tricky to observe, Martí said. "Because of stellar evolution, you need to catch the system at the right time," he added. "The microquasar phase of evolution is very short, and so it is difficult to find one in that phase."
Theorists predicted that microblazars would have special characteristics that should help define them. These features include powerful emissions across the electromagnetic spectrum, rapid changes in brightness (variability), and a hotspot behind them where its opposing jet heats up the interstellar medium in the opposite direction of Earth.
To observe IRAS 18293-0941, the study authors used a variety of instruments — including the Calar Alto Astronomical Observatory in Spain, a network of radio astronomy telescopes called the European VLBI Network, and the MeerKAT radio telescope array in South Africa — as well as archival data from the Very Large Array in New Mexico.
They found that IRAS 18293-0941 has all of the expected microblazar characteristics, except one — variability. Microblazars have rapid variability, which means their brightness changes a lot in a short period, because one of the jets is facing Earth and small changes in brightness are amplified by an effect called Doppler boosting.
Martí said IRAS 18293−0941's lack of rapid variability could be explained by the dense cloud of gas surrounding it, which could smooth out quick fluctuations in brightness.
The researchers are currently investigating whether the observed area behind the microblazar is in fact a hotspot, study co-author Pedro Luque-Escamilla, an astronomer at the University of Jaén, told Live Science.
Even with one of the expected features missing, this object is a promising candidate for the first known microblazar. "The claims and the results of the paper are sensible and there are no questionable hidden assumptions," Kinwah Wu, a theoretical astrophysicist at University College London who was not involved in the research, told Live Science in an email. "The source in this paper had shown signatures of interactions between the jets and the ambient material, which naturally leads to [particle] interaction."
Svetlana Jorstad, a senior research scientist at the Institute for Astrophysical Research at Boston University who was not involved in the research, told Live Science in an email that the new study was "very interesting, important and comprehensive."
Itumeleng Monageng, an astronomer at the University of Cape Town who was also not involved in the research, added that the team's observations "presents a previously overlooked mechanism for generating some of the highest energy emissions observed."
Microblazars "may power some of the universe's most energetic processes," Monageng told Live Science in an email.
Martí, J., Luque-Escamilla, P. L., Marcote, B., Abaroa, L., Aguasca-Cabot, A., Combi, J. A., Romero, G. E., Paredes, J. M., García, F., Fogantini, F., Saavedra, E. A., Del Ser, D., & Van Den Eijnden, J. (2026). A Galactic microblazar as a potential accelerator of ultra-high-energy particles. Astronomy and Astrophysics. https://doi.org/10.1051/0004-6361/202661105
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'> Earth is in the firing line of a strange new type of cosmic object, astronomers say During the Scandinavian Iron Age and Viking Age (from roughly 500 B.C. to A.D. 1050), violent encounters between individuals and communities steadily increased, resulting in archaeological evidence of elite warrior burials and mass graves from battles.
To better understand the context of violence in the Iron and Viking ages, researchers analyzed 192 human bones from people buried in domestic areas at settlements in what are now Denmark, Norway and Sweden.
"The fact is that not all bodies ended up in monumental burial mounds in the Iron and Viking Ages, or even in more modest urnfields and cemeteries," the researchers wrote in a study published Sept. 28 in the Journal of Archaeological Method and Theory. Rather, some bodies — or pieces of bodies — were placed in postholes, pits, floors, wells, houses, yards and feasting halls.
The archaeologists discovered that at least 12 of the individuals had sustained a violent injury around the time of death. Half of those cases involved head trauma, while four people suffered multiple injuries. Most of the victims of violence were adult males, but there were two females and a child as well.
In one Iron Age house in Denmark, built sometime between 500 and 1 B.C., archaeologists discovered a frontal bone from the skull of a child who died between the ages of 2 and 4 years old.
The skull of a child aged 2 to 4 from Aalborg, seen from different angles, and showing the damage from a sword cut. The skull was later placed on the floor of a house. (Image credit: National Museum of Denmark)"Our DNA analyses show that it is a small boy who has been cut with a sword," study first author Marianne Hem Eriksen, an archaeologist at the National Museum of Denmark, said in a translated statement. "The child's skull was placed on the floor of a house where people continued to live. This means that someone has walked over a child's skull day after day."
Radiocarbon dating revealed that the child's skull is significantly older than the house itself, by as many as two centuries, suggesting the bone may have been kept for some time before being placed in the house floor, according to the study.
At a Viking Age site dated to around 750 to 1050, archaeologists found a young woman's skull in a well near a cluster of four small houses. "The woman's skull bore traces of blows and was buried in a well," Eriksen said. She may have been cut or slashed with a sword or ax and, like the child, her bones may have been kept for a significant amount of time before being buried in the well. "These glimpses of lives lived from the past show how fascinatingly different people must have thought about life and death," Eriksen said.
And at the Viking Age site of Gammel Lejre, a royal feasting hall that many experts consider to be the inspiration for the epic Old English poem "Beowulf," archaeologists found the burial of a man whose skeleton bore numerous blunt force injuries, several of which had healed, and which attested to a difficult and likely painful life. His skeleton was discovered directly south of the feasting hall.
The study of bones in domestic areas "opens up a completely new understanding of Iron Age society, of the occurrence of violence and of the handling of the dead," Eriksen said. "The results show a much greater complexity in the everyday life and world of imagination of the time than we often attribute to Iron Age people."
But it is unclear exactly why these particular people were the victims of violence and why they were buried in such unusual ways. One possible scenario, the researchers wrote in the study, is that these were victims of violent domestic encounters rather than warfare. Their deaths may also have been the result of socially acceptable corporal punishment or some form of aggression within the community.
Given the increase in social inequality and rise in violence in the Iron and Viking ages, the researchers suspect that precarious community members may have been targeted.
"Not all lives were equally grieved and commemorated in the Iron and Viking Ages of Scandinavia," the researchers wrote. "We may question whether some lives were already considered disposable."
See how much you know about ancient norsemen with our Viking quiz!
'> Archaeologists discover a child's skull built into the floor of a 2,500-year-old Scandinavian house , which was taken in May 1952 and later published to show the double-helix structure, was specifically taken for the purpose of publication — not, as some narratives have held, an experimental shot that Franklin believed was insignificant. The new research revealed that Photograph 51 was a new exposure of a sample Franklin had already photographed. She started Photograph 51 the same day she saw that photograph, Photograph 49.
"She took it because she wanted to get a really refined version," said study co-author Alistair Sponsel, a historian of science at the Science History Institute in Philadelphia. Making the effort to take a better photograph of the same sample is "a sign she knew she had something really important on her hands," Sponsel told Live Science.
Watson further implied that Franklin was a laboratory automaton, good at the X-ray crystallography techniques used to capture the images of the DNA molecule but bad at interpreting her own data. The new archival work, published Monday (Oct. 5) in the Journal of the History of Biology, suggests otherwise.
Franklin's dearth of published notes about Photograph 51 has been used to suggest she missed a major discovery. But Sponsel said her journals show she noted the possible helical shape and rich structural data in her notes for her first picture of the sample, Photograph 49, which she followed up with the more refined image in Photograph 51.
"In Franklin's mind, they were two different types of scientific image," Sponsel said. Photograph 49 was the experimental image revealing exciting new data. Photograph 51 was the showpiece to convey these findings with the most clarity and sharpness possible.
This new understanding of the relationship between the two images, and how Franklin perceived them, is the most important feature of the new work, Sponsel said, which he conducted with molecular biophysicist Brian Sutton of King's College London. The project began when the Science History Institute acquired a new collection of archival material from Rosalind Franklin and her graduate student Raymond Gosling. The two researchers also combed through the archives at King’s College London, where Franklin was working when she took the famous photos.
Sponsel and Sutton think that Franklin's notes and actions reveal why she didn't rush to publish Photograph 51 right away. Her scientific goals, laid out in a report she wrote in February 1952, were to understand the two separate structures of DNA, then known as A and B. Structure B, illustrated in Photographs 49 and 51, turned out to be the double helix that occurs in nature. Structure A is a form DNA takes when it's dehydrated in the lab.
Structure A, when photographed, appeared more data-rich, so Franklin decided to characterize that structure first before studying structure B. But while she did this painstaking work, Wilkins showed Watson her photographs of structure B. The two scientists, together with Crick, then built a detailed model of DNA's double helix and scooped the discovery from under her nose.
Those three men shared the Nobel Prize for the work less than a decade later. Franklin died of ovarian cancer in 1958, making her ineligible for the prize — and leaving her insights to come to light only much later.
'> 'She knew she had something really important on her hands': Rosalind Franklin figured out DNA's helical structure before Watson and Crick, study s...
Fall is a fantastic time to stargaze, with meteor showers, full moons, constellations and planetary oppositions — some of which you can only see with binoculars or a telescope. Shop the best deals on telescopes and binoculars below.
Telescope deals
If you want a small, easy-to-use smart telescope with minimal investment, you can save $99 on the ZWO Seestar S30.
These small smart telescopes are ideal for deep-sky astrophotography, particularly for large nebulas and galaxies like the North America Nebula and the Andromeda Galaxy. They're an easy introduction to astrophotography, and you can also photograph the Moon and Sun, too.
Although we haven't reviewed this exact model, you can read our review of the S30 Pro, which we named the best portable smart telescope.View Deal
If you want a portable smart telescope that excels at wide-angle shooting, the Dwarf Mini is the ideal choice, and you can save $59 right now at Amazon.
Its portability is the killer feature here, as it's around half the weight of the Seestar S30 we mentioned above. Plus, the wide-angle camera is much wider, making it better for Milky Way landscapes, constellations and bigger portions of the sky.
Read our full Dwarflab Dwarf Mini reviewView Deal
Celestron AstroMaster 70AZ: was $199.95 now $151.9
This small, portable Celestron telescope is ideal for beginners and younger users who want a closer look at the Moon and planets.
Not to be confused with the Celestron AstroMaster LT 70AZ, which is smaller and gives you a slightly wider view. The standard AstroMaster 70AZ, which is on offer here, has a longer focal length, which is better suited to spotting planets, particularly Jupiter and Saturn. This telescope usually sits around $179, and this is the cheapest we've seen it since June.View Deal
Celestron StarSense Explorer LT 80AZ: was $249.95 now $199.99
The Celestron StarSense range is really useful for total beginners, as the smartphone dock and accompanying app work out where the telescope is pointing, then show arrows on the screen to guide you towards certain objects.
So, rather than "Here's a telescope, good luck finding Jupiter", the StarSense is much more "Here's what's visible tonight. Pick something, and I'll show you where it is".
If you can afford to stretch your budget, this is a better option than the AstroMaster 70LT we listed above. It has better light-gathering capabilities thanks to the wider aperture; it's a lighter package overall and it includes a 2x Barlow lens.
We've not reviewed the 80mm aperture model, but we do have a full Celestron StarSense Explorer LT 70AZ review.View Deal
If you're looking for more of an intermediate-level telescope, the Celestron AstroMaster 130EQ-MD is a great option, and you can save $58 right now.
The EQ mount has a bit of a learning curve, but once you've got it set up, it's a much more accurate way of tracking objects across the night sky. Plus, this version comes with a motor drive, so there's no manual adjusting needed.
The 130mm aperture is great for viewing brighter deep-sky objects, and the moon looks beautiful, as do Jupiter and Saturn. View Deal
Celestron NexStar 102SLT: was $639.95 now $479.99
If you like the intelligence of a smart telescope but want an observational telescope, a GoTo is the perfect combination. Once the telescope is aligned, you use the handset to select a celestial object from the list, and the telescope automatically orients itself toward your chosen object.
This telescope has a 102mm aperture, which is excellent for observing larger deep-sky objects, the moon, and planets. It's user-friendly without feeling too much like a beginner telescope, and it's an excellent price.View Deal
Binocular deals
These massive, powerful astronomy binoculars are the closest thing to a telescope that isn't actually a telescope. With 25x magnification and 100mm objective lens diameter, they're perfect for getting detailed views of the moon and night sky.
Be warned, they're very big and very heavy, so you'll need to mount them on a tripod. They're for dedicated astronomy users, so if you want something lightweight and portable, check out some of the other options in this guide.
Read our full Celestron SkyMaster 25x100 reviewView Deal
If you're looking for astronomy binoculars on a budget, these 12x60s from Celestron are ideal. They're a little big to use handheld, but they'll give you great views of the moon and stars, and you'll be able to spot Jupiter's moons.
Read our full Celestron SkyMaster 12x60 reviewView Deal
The Celestron Regal ED 10x42 is one of the best multi-use binoculars we've tested. The ED glass and field-flattening technology produce clear, sharp views across the entire frame, and the 10x42 spec is good for spotting wildlife and sweeping across the sky to get a closer look at the moon and stars.
Read our full Celestron Regal ED 10x42 reviewView Deal
'> Amazon Prime Big Deal Days 2026: Best stargazing deals on telescopes and binoculars