Close Menu
    Facebook X (Twitter) Instagram
    SciTechDaily
    • Biology
    • Chemistry
    • Earth
    • Health
    • Physics
    • Science
    • Space
    • Technology
    Facebook X (Twitter) Pinterest YouTube RSS
    SciTechDaily
    Home»Physics»Directly Challenging Our Understanding of Nuclear Force: Scientists Discover Strongest Isospin Mixing Ever Observed
    Physics

    Directly Challenging Our Understanding of Nuclear Force: Scientists Discover Strongest Isospin Mixing Ever Observed

    By Chinese Academy of Sciences HeadquartersJanuary 21, 20232 Comments3 Mins Read
    Facebook Twitter Pinterest Telegram LinkedIn WhatsApp Email Reddit
    Share
    Facebook Twitter LinkedIn Pinterest Telegram Email Reddit
    Particle Physics Concept
    Isospin mixing is a concept in nuclear physics that refers to the symmetry in atomic nuclei induced by the nearly identical properties between protons and neutrons.

    Researchers have observed the strongest isospin mixing ever observed in β-decay experiments, challenging current nuclear models.

    Researchers from the Chinese Academy of Sciences’ Institute of Modern Physics and their collaborators have identified the most significant isospin mixing observed in beta-decay experiments, directly challenging our current understanding of the nuclear force. The findings were featured as an Editors’ Suggestion in the journal Physical Review Letters.

    In 1932, Werner Heisenberg, a Nobel Prize laureate, introduced the idea of isospin to explain the symmetry in atomic nuclei resulting from the similar properties of protons and neutrons. Isospin symmetry is still widely accepted today.

    Challenges to Current Nuclear Models

    However, isospin symmetry is not strictly conserved due to proton-neutron mass difference, Coulomb interaction, and charge-dependent aspects of nuclear force. Such asymmetry leads to fragmentation of the allowed Fermi transition to many states via strong isospin mixing, instead of being constrained to one state in β decay.

    β Delayed Two Proton Decay of Phosphorus 26
    β-delayed two-proton decay of phosphorus-26. Credit: Jian Hao

    Probing isospin mixing has gained considerable traction in scientific discovery. β decay of proton-rich nuclei plays an essential role in exploring isospin mixing. Until now, isospin mixing was observed only in several β-decay experiments and the isospin mixing matrix elements were smaller than 50 keV, which could be described by nuclear models very well.

    The scientists at IMP and their collaborators provided new data on isospin mixing. They conducted a β-decay experiment on the exotic nucleus phosphorus-26 at the Radioactive Ion Beam Line in Lanzhou, which is housed at the Heave Ion Research Facility of Lanzhou.

    Through high-precision nuclear spectroscopy of β-delayed two-proton emission, the scientists clearly identified the isobaric analog state (IAS) at 13055 keV and two new high-lying states at 13380 keV and 11912 keV in silicon-26. They measured angular correlations of two protons emitted from silicon-26 excited states, suggesting that the two protons are emitted mainly sequentially.

    Record-Setting Isospin Mixing Discovery

    Surprisingly, the scientists observed a strongly isospin-mixed doublet, the IAS and 13380-keV state in silicon-26. The large isospin mixing matrix element 130(21) keV between the two states was determined, representing the strongest mixing ever observed in β-decay experiments.

    The unexpected experimental result cannot be explained very well by nuclear models. “The abnormally strong isospin mixing in this work, which may have to do with the weakly bound (or continuum) effect or nuclear deformation, presents a direct challenge to our understanding of nuclear force,” said Professor Xu Xinxing from IMP, corresponding author of this study.

    Reference: “Observation of a Strongly Isospin-Mixed Doublet in 26Si via β-Delayed Two-Proton Decay of 26P” by J. J. Liu et al. (RIBLL Collaboration), 8 December 2022, Physical Review Letters.
    DOI: 10.1103/PhysRevLett.129.242502

    Never miss a breakthrough: Join the SciTechDaily newsletter.
    Follow us on Google and Google News.

    Chinese Academy of Sciences Nuclear Particle Physics Popular
    Share. Facebook Twitter Pinterest LinkedIn Email Reddit

    Related Articles

    Inside the Enigmatic Proton: A Tale of Differing Mass and Size Measurements

    Sequential “Melting” of Upsilons: New Insight Into the Hottest Matter on Earth

    Electrons Set the Stage for Neutrino Experiments – Solving Mystery of the Origins of Our Matter-Dominated Universe

    New Realm of “Unnuclear Physics” – Neutrons May Actually “Talk” to One Another in New Kind of Symmetry

    Scientists Propose New Source for Rare Subatomic “Bullets”

    Cracking the Secrets of an Emerging Branch of Physics: Exotic Properties to Power Real-World Applications

    Argonne and CERN Explore Long-Held Mystery in Nuclear Physics

    Physicists Get Closer to Solving the Proton Radius Puzzle With Unique New Measurement

    In Proton Collisions, More Energy Means More Effects

    2 Comments

    1. Bao-hua ZHANG on January 22, 2023 3:40 am

      The interactions and balances of topological vortex fields cover all short-distance and long-distance contributions, and are the basis of the formation and evolution of cosmic matter. Symmetry is mainly expressed between topological vortex and anti-vortex, rather than between the high-dimensional space-time matter formed by their interaction.

      Reply
    2. Eric on January 22, 2023 7:10 pm

      “Such asymmetry leads to fragmentation of the allowed Fermi transition to many states via strong isospin mixing, instead of being constrained to one state in β decay”

      Only the person who wrote that paper actually understands what it means. Everyone else just copies it as written and pretends. Math does not translate to English well sometimes.

      Reply
    Leave A Reply Cancel Reply

    • Facebook
    • Twitter
    • Pinterest
    • YouTube

    Don't Miss a Discovery

    Subscribe for the Latest in Science & Tech!

    Trending News

    Wasp Colonies Explode Into Violence After Losing Their Queen

    Scientists Create “Living Plastic” That Self-Destructs in Just Six Days

    Your Blood May Carry a 700-Million-Year-Old Secret

    Scientists Discover Some “Zombie Cells” May Actually Help You Live Longer

    Earth May Be Seeding Venus With Life, According to New Research

    What Scientists Found Inside a 117-Year-Old Woman Reveals New Clues to Long Life

    Scientists Discover Mysterious Creature Living in the Great Salt Lake – and It Exists Nowhere Else on Earth

    It’s Alive? Surprising Discovery Changes What We Know About Fog

    Follow SciTechDaily
    • Facebook
    • Twitter
    • YouTube
    • Pinterest
    • Newsletter
    • RSS
    SciTech News
    • Biology News
    • Chemistry News
    • Earth News
    • Health News
    • Physics News
    • Science News
    • Space News
    • Technology News
    Recent Posts
    • Scientists Discover Alzheimer’s-Linked Proteion’s Surprising Role in Making Memories Last
    • Vitamin D Drug Shows Surprising Promise Against One of the Deadliest Cancers
    • Scientists Crack Major Ammonia Problem With a Platinum Catalyst Breakthrough
    • MIT Engineers Solve a Major Lidar Problem That Has Stumped Researchers for Years
    • NASA’s X-59 Sonic Boom Killer Is Ready for Its Biggest Test Yet
    Copyright © 1998 - 2026 SciTechDaily. All Rights Reserved.
    • Science News
    • About
    • Contact
    • Editorial Board
    • Privacy Policy
    • Terms of Use

    Type above and press Enter to search. Press Esc to cancel.