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Showing 1–50 of 539 results
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  • Machine learning is used to understand emissions of the potent greenhouse gas nitrous oxide from the Southern Ocean. Low-pressure storms are found to drive emissions, leading to a revised picture of marine greenhouse gas cycling

    • Colette L. Kelly
    • Bonnie X. Chang
    • David P. Nicholson
    ResearchOpen Access
    Nature Communications
    P: 1-12
  • The authors study a topological insulator (TI) sandwiched between two magnetic TIs. By keeping one of the magnetic TIs insulating, while tuning the other one into a metallic regime, they find half quantized anomalous Hall conductance, a boundary signature consistent with a quantized axion field.

    • Jiayuan Hu
    • Binbin Wang
    • Di Xiao
    ResearchOpen Access
    Nature Communications
    P: 1-8
  • Identifying jets originating from heavy quarks plays a fundamental role in hadronic collider experiments. In this work, the ATLAS Collaboration describes and tests a transformer-based neural network architecture for jet flavour tagging based on low-level input and physics-inspired constraints.

    • G. Aad
    • E. Aakvaag
    • L. Zwalinski
    ResearchOpen Access
    Nature Communications
    Volume: 17, P: 1-22
  • Absorption in one-port passive systems is known to be bound by causality constraints. Here, authors study reflection and transmission of a two-port system to introduce a generalized causality constraint based on duality symmetry. Experimentally, the broadened bandwidth of their meta-absorbers shows the untapped absorption potential of broadband acoustic metamaterials.

    • Sichao Qu
    • Min Yang
    • Nicholas X. Fang
    ResearchOpen Access
    Nature Communications
    Volume: 16, P: 1-11
  • A mechano-intelligent transmission mechanism based on the slipknot delivers precise force signals for clinical practice and robotic operations such as minimally invasive surgery and tendon-driven robotics.

    • Yaoting Xue
    • Jiasheng Cao
    • Xiujun Cai
    ResearchOpen Access
    Nature
    Volume: 647, P: 889-896
  • This study leverages plasma proteomics from over 50,000 individuals to build organ-specific aging models and uncover underlying genetic mechanisms. It also investigates causal links between organ aging, diseases, and lifestyle, providing insights for promoting healthy longevity.

    • Ren-Jie Zhu
    • Yan Guo
    • Tie-Lin Yang
    ResearchOpen Access
    Nature Communications
    Volume: 17, P: 1-14
  • PMEL fibril structure is a long-standing question. Here, the authors resolve the atomic structure and in situ organization of native PMEL lamellae, revealing the assembly mechanism of these functional amyloid fibrils in melanosomes.

    • Boyuan Ma
    • Yuxuan Yao
    • Dan Li
    ResearchOpen Access
    Nature Communications
    Volume: 16, P: 1-17
  • The synthesis of crystalline 2D polymers typically relies on reversible dynamic covalent reactions, but achieving 2D polymers through irreversible carbon-carbon coupling reactions remains a formidable challenge. Here, the authors present an on-liquid surface synthesis method for constructing diyne-linked 2D polymers.

    • Ye Yang
    • Yufeng Wu
    • Xinliang Feng
    ResearchOpen Access
    Nature Communications
    Volume: 16, P: 1-11
  • The understanding of the reemergence of pressure induced superconductivity in alkali-metal intercalated FeSe is hampered by sample complexities. Here, Sun et al. report the electronic properties of (Li1–xFe x )OHFe1–ySe single crystal not only in the reemerged superconducting state but also in the normal state.

    • J. P. Sun
    • P. Shahi
    • J.-G. Cheng
    ResearchOpen Access
    Nature Communications
    Volume: 9, P: 1-7
  • While Bell inequalities have been violated several times—mostly in photonic systems—their violations within particle physics experiments are less explored. Here, the BESIII Collaboration showcases Bell-violating nonlocal correlations between entangled hyperon pairs.

    • M. Ablikim
    • M. N. Achasov
    • J. Zu
    ResearchOpen Access
    Nature Communications
    Volume: 16, P: 1-9
  • A new artificial intelligence model, DeepSeek-R1, is introduced, demonstrating that the reasoning abilities of large language models can be incentivized through pure reinforcement learning, removing the need for human-annotated demonstrations.

    • Daya Guo
    • Dejian Yang
    • Zhen Zhang
    ResearchOpen Access
    Nature
    Volume: 645, P: 633-638
  • Thermal lepton pairs are ideal probes for the temperature of quark-gluon plasma. Here, the STAR Collaboration uses thermal electron-positron pair production to measure quark-gluon plasma average temperature at different stages of the evolution.

    • B. E. Aboona
    • J. Adam
    • M. Zyzak
    ResearchOpen Access
    Nature Communications
    Volume: 16, P: 1-11
  • The exact mechanism for superconductivity in iron-based superconductors remains elusive, but is thought to involve complex interactions between many orbitals. Using angle-resolved photoelectron spectroscopy, Liuet al. report the electronic structure of the single-layer parent compound FeSe.

    • Defa Liu
    • Wenhao Zhang
    • X.J. Zhou
    Research
    Nature Communications
    Volume: 3, P: 1-6
  • The semileptonic decay channels of the Λc baryon can give important insights into weak interaction, but decay into a neutron, positron and electron neutrino has not been reported so far, due to difficulties in the final products’ identification. Here, the BESIII Collaboration reports its observation in e+e- collision data, exploiting machine-learning-based identification techniques.

    • M. Ablikim
    • M. N. Achasov
    • J. Zu
    ResearchOpen Access
    Nature Communications
    Volume: 16, P: 1-12
  • Investigating the inner structure of baryons is important to further our understanding of the strong interaction. Here, the BESIII Collaboration extracts the absolute value of the ratio of the electric to magnetic form factors and its relative phase for e + e − → J/ψ → ΛΣ decays, enhancing the signal thanks to the vacuum polarisation effect at the J/ψ peak.

    • M. Ablikim
    • M. N. Achasov
    • J. Zu
    ResearchOpen Access
    Nature Communications
    Volume: 15, P: 1-9
  • The authors present a soft metalens (SML) with tungsten-gel composite for ultra-broadband transcranial focus, significantly enhancing intracranial sound pressure and spatial resolution. This breakthrough advances underwater sonar, medical ultrasound imaging, and non-invasive detection for energy transmission.

    • Erqian Dong
    • Tianye Zhang
    • Yu Zhang
    ResearchOpen Access
    Nature Communications
    Volume: 16, P: 1-13
  • Earth-abundant TiO2 is a promising negative electrode material for low-cost sodium-ion batteries. Here, authors show that ordered rocksalt NaTiO2 nanograins are in situ formed by electrochemically cycling with Na+ ions in anatase TiO2, which determines the pseudocapacitive high-rate capability.

    • Dafu Tang
    • Ruohan Yu
    • Qiulong Wei
    ResearchOpen Access
    Nature Communications
    Volume: 16, P: 1-9
  • This work proposes a wet-chemical etching assisted aberration-enhanced single-pulsed femtosecond laser nanolithography, named “WEALTH”, for manufacturing small-size, large-area, deep holey nanostructures, promising for emerging nanophotonic devices.

    • Zhi Chen
    • Lijing Zhong
    • Jianrong Qiu
    ResearchOpen Access
    Nature Communications
    Volume: 16, P: 1-12
  • This study introduces the Cattle Cell Atlas, a single-cell expression resource including 1,793,854 cells from 59 tissues. Integrative analyses leveraging this atlas provide insights into the biology underlying bovine monogenic and complex traits.

    • Bo Han
    • Houcheng Li
    • Dongxiao Sun
    ResearchOpen Access
    Nature Genetics
    Volume: 57, P: 2546-2561
  • Sensitive, biocompatible and stable contrast agents for MRI are in demand. Here, the authors combine gadolinium ions with amorphous calcium carbonate to make stable paramagnetic amorphous carbonate nanoclusters with high MRI contrast and significantly improved biocompatibility over commercial gadolinium-based agents.

    • Liang Dong
    • Yun-Jun Xu
    • Shu-Hong Yu
    ResearchOpen Access
    Nature Communications
    Volume: 13, P: 1-13
  • A bubble at an air–liquid interface can form a liquid jet upon bursting, spraying aerosol droplets into the air. Leeet al. show that jetting is analogous to pinching-off in liquid coalescence, which may be useful in applications that prevent jet formation and in the improved incorporation of aerosols in climate models.

    • Ji San Lee
    • Byung Mook Weon
    • Wah-Keat Lee
    ResearchOpen Access
    Nature Communications
    Volume: 2, P: 1-7
  • Cell type labelling in single-cell datasets remains a major bottleneck. Here, the authors present AnnDictionary, an open-source toolkit that enables atlas-scale analysis and provides the first benchmark of LLMs for de novo cell type annotation from marker genes, showing high accuracy at low cost.

    • George Crowley
    • Robert C. Jones
    • Stephen R. Quake
    ResearchOpen Access
    Nature Communications
    Volume: 16, P: 1-14
  • The red fluorescent protein mScarlet3-H is bright, photostable and very robust to high temperature, chaotropic conditions and oxidative environments. mScarlet3-H works well in correlative light and electron microscopy, tissue clearing and time-lapse super-resolution microscopy.

    • Haiyan Xiong
    • Qiyuan Chang
    • Zhifei Fu
    Research
    Nature Methods
    Volume: 22, P: 1288-1298
  • The dorsal peduncular area of the mouse brain functions as a network hub that integrates diverse cortical and thalamic inputs to regulate neuroendocrine and autonomic responses.

    • Houri Hintiryan
    • Muye Zhu
    • Hong-Wei Dong
    ResearchOpen Access
    Nature
    P: 1-15
  • The authors mapped the dendritic morphology of thousands of striatal D1-type and D2-type medium spiny neurons in healthy and Huntington’s disease mouse brains, revealing dendritic modules with distinct neuronal shapes, spatial distributions and cortical inputs.

    • Chang Sin Park
    • Ming Yan
    • X. William Yang
    Research
    Nature Neuroscience
    Volume: 28, P: 2628-2643
  • Entanglement was observed in top–antitop quark events by the ATLAS experiment produced at the Large Hadron Collider at CERN using a proton–proton collision dataset with a centre-of-mass energy of √s  = 13 TeV and an integrated luminosity of 140 fb−1.

    • G. Aad
    • B. Abbott
    • L. Zwalinski
    ResearchOpen Access
    Nature
    Volume: 633, P: 542-547
  • The selective cleavage of inert C(sp3)-C(sp3) bonds and their subsequent functionalization is an important goal in synthetic organic chemistry. Here, the authors developed consecutive C–C bond cleavage from stable trisubstituted acids via photocatalysis and copper catalysis.

    • Ruining Li
    • Ya Dong
    • Zhankui Sun
    ResearchOpen Access
    Nature Communications
    Volume: 13, P: 1-12
  • The LHCb experiment at CERN has observed significant asymmetries between the decay rates of the beauty baryon and its CP-conjugated antibaryon, thus demonstrating CP violation in baryon decays.

    • R. Aaij
    • A. S. W. Abdelmotteleb
    • G. Zunica
    ResearchOpen Access
    Nature
    Volume: 643, P: 1223-1228
  • High-pressure diamond anvil cell experiments reveal that compression strengthening of nanocrystalline nickel increases as its grain sizes decrease to 3 nanometres, owing to dislocation hardening and suppression of grain boundary plasticity.

    • Xiaoling Zhou
    • Zongqiang Feng
    • Bin Chen
    Research
    Nature
    Volume: 579, P: 67-72
  • A human ascending somatosensory assembloid model was developed, which integrates multiple organoids to simulate the spinothalamic pathway, demonstrating functional connectivity and responsiveness to stimuli and revealing insights into pain-related genetic mutations.

    • Ji-il Kim
    • Kent Imaizumi
    • Sergiu P. Pașca
    ResearchOpen Access
    Nature
    Volume: 642, P: 143-153
  • With the generation of large pan-cancer whole-exome and whole-genome sequencing projects, a question remains about how comparable these datasets are. Here, using The Cancer Genome Atlas samples analysed as part of the Pan-Cancer Analysis of Whole Genomes project, the authors explore the concordance of mutations called by whole exome sequencing and whole genome sequencing techniques.

    • Matthew H. Bailey
    • William U. Meyerson
    • Christian von Mering
    ResearchOpen Access
    Nature Communications
    Volume: 11, P: 1-27
  • A nanofluidic intracellular delivery (NanoFLUID) patch provides a versatile, biocompatible and efficient method for the targeted delivery of payloads to internal organs for therapeutic purposes and for biomolecular investigations.

    • Dedong Yin
    • Pan Wang
    • Mo Li
    Research
    Nature
    Volume: 642, P: 1051-1061
  • Effective band-gap engineering of armchair graphene nanoribbons calls for control over both width and edge structure. Here, the authors report a modular synthesis of narrow N = 6 armchair graphene nanoribbons whose edges can be unsymmetrically modified with heteroarenes, introducing a simple way to tune band gap.

    • Gang Li
    • Ki-Young Yoon
    • Guangbin Dong
    ResearchOpen Access
    Nature Communications
    Volume: 9, P: 1-9
  • Most neuronal reconstruction software can automatically trace single neuronal morphologies but tracing multiple, densely interwoven neurons is much more challenging. Here the authors develop G-Cut, a computational approach for accurate segmentation of densely interconnected neuron clusters.

    • Rui Li
    • Muye Zhu
    • Hong-Wei Dong
    ResearchOpen Access
    Nature Communications
    Volume: 10, P: 1-12
  • This work employs nano- to microscale characterization to identify different structural change pathways associated with non-homogeneous reactions within the particles, and explores differences in the failure mechanisms of lithium-rich transition metal oxide materials at different current densities.

    • Zhimeng Liu
    • Yuqiang Zeng
    • Xin He
    Research
    Nature Nanotechnology
    Volume: 19, P: 1821-1830
  • Ultrafast control of materials draws interest. Here, the authors extend X-ray powder diffraction to the femtosecond timescale to follow the photo-induced semiconductor to metal transition in titanium pentaoxide, observing a phase front that moves at the speed of sound and proposing a little explored mechanism.

    • C. Mariette
    • M. Lorenc
    • M. Cammarata
    ResearchOpen Access
    Nature Communications
    Volume: 12, P: 1-11