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Showing 1–50 of 1794 results
Advanced filters: Author: Y. X. Zhao Clear advanced filters
  • 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
  • Extrachromosomal circular DNAs (ecDNAs) are prevalent in human cancers and are thought to drive tumor evolution and drug resistance by amplifying oncogenes. Here, authors develop ec3D to reconstruct three-dimensional ecDNA structures, revealing how their spatial organization rewires regulatory circuits.

    • Biswanath Chowdhury
    • Kaiyuan Zhu
    • Vineet Bafna
    ResearchOpen Access
    Nature Communications
    Volume: 17, P: 1-20
  • Humanity’s Last Exam, a multi-modal benchmark at the frontier of human knowledge, is designed to be an expert-level closed-ended academic benchmark with broad subject coverage.

    • Long Phan
    • Alice Gatti
    • Davide Scaramuzza
    ResearchOpen Access
    Nature
    Volume: 649, P: 1139-1146
  • The early detection of degradation in lithium-ion batteries is crucial for effective predictive maintenance and recycling. Here, the authors propose a two-stage early-stage degradation prediction method based on GPT to predict the charging data of and state-of-health of batteries

    • Jincheng Hu
    • Pengyu Fu
    • Yuanjian Zhang
    ResearchOpen Access
    Nature Communications
    Volume: 17, P: 1-12
  • The CMS Collaboration reports the measurement of the spin, parity, and charge conjugation properties of all-charm tetraquarks, exotic fleeting particles formed in proton–proton collisions at the Large Hadron Collider.

    • A. Hayrapetyan
    • V. Makarenko
    • A. Snigirev
    ResearchOpen Access
    Nature
    Volume: 648, P: 58-63
  • A soft robotic probe enables continuous in utero monitoring of fetal physiological parameters, including heart rate, blood oxygen saturation, temperature and electrocardiogram data, during open or fetoscopic surgery to provide real-time information on fetal condition and distress.

    • Hedan Bai
    • Jianlin Zhou
    • John A. Rogers
    Research
    Nature Biomedical Engineering
    P: 1-14
  • The enzyme PCMT1 was found to install a C-terminal cyclic imide modification on proteins that marks them for degradation by CRBN, uncovering a conserved protein turnover pathway with implications in metabolism and neurological function.

    • Zhenguang Zhao
    • Wenqing Xu
    • Christina M. Woo
    Research
    Nature Chemical Biology
    P: 1-11
  • Topological states are exploited based on crystalline symmetry, but under artificial gauge fields, symmetries may satisfy projective algebras, which remains less studied. Here, the authors reveal that projective symmetry algebra leads to momentum-space nonsymmorphic symmetry, resulting in new topological states over a momentum-space Klein bottle.

    • Z. Y. Chen
    • Shengyuan A. Yang
    • Y. X. Zhao
    ResearchOpen Access
    Nature Communications
    Volume: 13, P: 1-5
  • Mapping of the neutrophil compartment using single-cell transcriptional data from multiple physiological and patological states reveals its organizational architecture and how cell state dynamics and trajectories vary during health, inflammation and cancer.

    • Daniela Cerezo-Wallis
    • Andrea Rubio-Ponce
    • Iván Ballesteros
    ResearchOpen Access
    Nature
    Volume: 649, P: 1003-1012
  • Here, the authors report an exome-wide association study for multi-organ imaging traits by leveraging recent bioinformatic tools such as AlphaMissense. The identified signals elucidate the genetic effects from rare variants on human organs and their connections to complex diseases

    • Yijun Fan
    • Jie Chen
    • Bingxin Zhao
    ResearchOpen Access
    Nature Communications
    Volume: 17, P: 1-21
  • In returning Thouless pumping, the quantized charge is pumped during the first half of the cycle and returns to zero during the second. Here, authors demonstrate returning Thouless pumping experimentally with a symmetry-protected delicate topological insulator, made of a two-dimensional acoustic crystal.

    • Zheyu Cheng
    • Sijie Yue
    • Baile Zhang
    ResearchOpen Access
    Nature Communications
    Volume: 16, P: 1-7
  • Creative experiences such as dance, music, drawing, and strategy video games might preserve brain health. The authors show that regular practice or short training in these activities is linked to brains that look younger and work more efficiently.

    • Carlos Coronel-Oliveros
    • Joaquin Migeot
    • Agustin Ibanez
    ResearchOpen Access
    Nature Communications
    Volume: 16, P: 1-16
  • Here the authors report NiGa2O4–x(OH)y for light-driven CO2 hydrogenation to methanol. The surface Lewis acid–base pairs and -OH groups act as conduits for H- /H+ transport to active sites, enhancing photocatalytic methanol production.

    • Rui Song
    • Zhiwen Chen
    • Geoffrey A. Ozin
    ResearchOpen Access
    Nature Communications
    Volume: 16, P: 1-14
  • Two-dimensional poly(arylene vinylene) frameworks are promising polymer semiconductors, yet obtaining highly crystalline materials is a major challenge. Now a series of 11 highly crystalline or single-crystalline 2D poly(arylene vinylene)s have been prepared—from 2D imine-linked covalent organic frameworks through a Mannich-elimination strategy—with diverse lattices, enhanced conjugation and specific surface areas up to 2,000 m2 g−1.

    • Shaik Ghouse
    • Ziang Guo
    • Xinliang Feng
    ResearchOpen Access
    Nature Chemistry
    P: 1-10
  • SARS-CoV-2 continues to evolve, necessitating updated vaccines and therapeutics. Here the authors identify three broadly binding antibodies from vaccinated or infected individuals, characterize their conserved non-overlapping RBD epitopes by structural analysis and demonstrate protective effects in a hamster model.

    • Minxiang Xie
    • Yinong Qiu
    • Qiao Wang
    ResearchOpen Access
    Nature Communications
    Volume: 16, P: 1-19
  • Diluted magnetic semiconductors are promising spintronic materials, however the simultaneous doping of charge and magnetic moment has prevented synthesis of bulk samples. This work reports the synthesis of a bulk magnetic semiconductor (Ba1−xKx)(Zn1−yMny)2As2with Curie temperatures up to 180 K.

    • K. Zhao
    • Z. Deng
    • C. Q. Jin
    Research
    Nature Communications
    Volume: 4, P: 1-5
  • The death of massive stars has traditionally been discovered by explosive events in the gamma-ray band. Liu et al. show that the sensitive wide-field monitor on board Einstein Probe can reveal a weak soft-X-ray signal much earlier than gamma rays.

    • Y. Liu
    • H. Sun
    • X.-X. Zuo
    Research
    Nature Astronomy
    Volume: 9, P: 564-576
  • Zhang et al. design a nanostructure which activates an adaptive martensitic transformation mechanism in a nuclear grade austenitic stainless steel, achieving extraordinary radiation resistance with non-degraded mechanical properties.

    • S. Zhang
    • Y. B. Dong
    • Z. B. Wang
    ResearchOpen Access
    Nature Communications
    Volume: 16, P: 1-10
  • 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
  • Hi-C methods for studying 3D genome structure typically require millions of cells and struggle with repetitive regions. Here, authors develop CiFi, combining 3C with PacBio HiFi sequencing, enabling chromatin analysis from as few as 60,000 cells and chromosome-scale assembly from small samples.

    • Sean P. McGinty
    • Gulhan Kaya
    • Megan Y. Dennis
    ResearchOpen Access
    Nature Communications
    Volume: 17, P: 1-11
  • Brain age gaps (BAGs) highlight deviations from healthy brain aging, yet their biophysical underpinnings in aging and dementia are not well understood. Here, the authors use EEG connectivity and generative modeling across diverse populations to reveal that BAGs are influenced by geography, income, sex and education, with implications for understanding accelerated aging and dementia.

    • Carlos Coronel-Oliveros
    • Sebastián Moguilner
    • Agustin Ibanez
    Research
    Nature Mental Health
    Volume: 3, P: 1214-1229
  • 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 â†’ 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
  • GM4951 is a GTPase in hepatic lipid metabolism. Here, the authors determine the atomic structure of GM4951, which forms a tail-to-tail dimer essential for lipid droplet localization. MASLD-linked mutations destabilize the protein and alter the dynamics of switch loops of the GTPase domain.

    • Rishi Raj
    • Yiao Jiang
    • Bruce Beutler
    ResearchOpen Access
    Nature Communications
    Volume: 16, P: 1-18
  • 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
  • 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
  • In this Perspective, members of the Aging Biomarker Consortium outline the X-Age Project, an Aging Biomarker Consortium plan for building standardized aging clocks in China. The authors discuss the project roadmap and its aims of decoding aging heterogeneity, detecting accelerated aging early and evaluating geroprotective interventions.

    • Jiaming Li
    • Mengmeng Jiang
    • Guang-Hui Liu
    Reviews
    Nature Aging
    Volume: 5, P: 1669-1685
  • The emission of entangled photon pairs from layered materials is attractive for quantum applications, but its observation in monolayers has remained elusive. Here, the authors report co- and counter-propagating photon pair emission in the telecom range from monolayer GaSe and the observation of high-fidelity Bell states in the counterpropagating configuration.

    • Zhuoyuan Lu
    • Jiri Janousek
    • Yuerui Lu
    ResearchOpen Access
    Nature Communications
    Volume: 16, P: 1-9
  • Wastewater-based surveillance tends to focus on specific pathogens. Here, the authors mapped the wastewater virome from 62 cities worldwide to identify over 2,500 viruses, revealing city-specific virome fingerprints and showing that wastewater metagenomics enables early detection of emerging viruses.

    • Nathalie Worp
    • David F. Nieuwenhuijse
    • Miranda de Graaf
    ResearchOpen Access
    Nature Communications
    Volume: 16, P: 1-19
  • Here the authors provide an explanation for 95% of examined predicted loss of function variants found in disease-associated haploinsufficient genes in the Genome Aggregation Database (gnomAD), underscoring the power of the presented analysis to minimize false assignments of disease risk.

    • Sanna Gudmundsson
    • Moriel Singer-Berk
    • Anne O’Donnell-Luria
    ResearchOpen Access
    Nature Communications
    Volume: 16, P: 1-14
  • Developing porous crystalline materials with tailored properties is challenging because of the vast design space and the high cost of screening. Now, highly fluorescent covalent organic frameworks have been identified through an AI-assisted iterative experiment–learning cycle workflow that integrates electronic configuration and quantum-level insights into the learning process.

    • Liang Zhang
    • Jiahui Du
    • Hexiang Deng
    Research
    Nature Chemistry
    Volume: 17, P: 1645-1654
  • Magnetically intercalated transition metal dichalcogenides provide a platform to study the interplay of magnetism, electronic band structures, and correlations. Here the authors demonstrate a nearly magnetization-free anomalous Hall effect, collinear antiferromagnetism and non-Fermi liquid behavior in V1/3NbS2.

    • Mayukh Kumar Ray
    • Mingxuan Fu
    • Satoru Nakatsuji
    ResearchOpen Access
    Nature Communications
    Volume: 16, P: 1-11
  • 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