Breaking 20:00 Man arrested after suspected arson attack outside federal building in New York 19:31 NASA says Artemis III remains on track despite Blue Origin setback 17:45 US appeals court overturns class action status in Boeing 737 MAX 9 shareholder lawsuit 15:45 US accuses Cuba of decades-long espionage and subversion campaign 15:36 New York reports three deaths and 74 cases linked to Legionnaires’ disease outbreak 15:10 Trump demands compensation from Canada over Ontario wildfire smoke impact 13:46 US expands electronic warfare capabilities for Morocco’s Apache helicopters 13:45 Tempus to acquire Personalis in $1.5 billion deal to strengthen AI-driven cancer diagnostics 12:15 Trump expresses interest in bringing another World Cup to the United States 12:00 Jd Vance welcomes fourth child after World Cup final 11:30 FIFA's first World Cup final halftime show sparks debate despite star-studded lineup 11:06 Hut 8 secures $9.8 billion AI data center lease to fully commercialize Texas campus 10:31 Meta faces Tennessee trial over claims Instagram was designed to encourage addictive use 10:30 Netanyahu's office condemns New York mayor's remarks over possible arrest during UN General Assembly 10:05 Morgan Stanley expands digital services with direct cryptocurrency trading 09:30 Trump Media considers premium subscription for early access to Trump's Truth Social posts 09:00 New York records second death as Legionnaires' disease outbreak grows 07:30 Nine people injured in Tucson shooting as police investigate motive

Studies pinpoint Sun's magnetic engine deep below surface

Friday 27 March 2026 - 07:50
By: Dakir Madiha
Studies pinpoint Sun's magnetic engine deep below surface

Two recent studies reshape scientists' view of the Sun's hidden magnetic interior. Researchers at the New Jersey Institute of Technology analyzed nearly 30 years of solar oscillation data from NASA's Solar and Heliospheric Observatory, Solar Dynamics Observatory and the ground-based Global Oscillation Network Group. Their findings, published in Nature's Scientific Reports, identify the tachocline a thin boundary layer about 200,000 kilometers beneath the surface as the likely origin of the solar dynamo.

This layer separates the Sun's turbulent outer convection zone from its stable radiative interior. The team detected migrating rotation bands deep inside that form a butterfly-shaped flow pattern, mirroring sunspot migration on the surface. The pattern traces back to the tachocline, equivalent to stacking 16 Earths in depth, challenging a 2024 Nature study that placed the dynamo closer to the surface.

In a separate study, scientists at NYU Abu Dhabi's Center for Astrophysics and Space Science reported detection of previously unknown large-scale magneto-Rossby waves deep in the Sun. Published in Nature Astronomy, their analysis of over a decade of helioseismic data revealed global waves shaped by internal magnetism, theorized for decades but now observed convincingly.

These waves offer insights into the Sun's magnetic structure. Both discoveries aid space weather forecasting. Solar eruptions like flares and coronal mass ejections disrupt satellites, navigation signals, communications and power grids on Earth. Models must now account for convection zone depths, including the tachocline, and these waves could probe other active stars.


  • Fajr
  • Sunrise
  • Dhuhr
  • Asr
  • Maghrib
  • Isha

Read more

This website, walaw.press, uses cookies to provide you with a good browsing experience and to continuously improve our services. By continuing to browse this site, you agree to the use of these cookies.