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科学通报(英文版)
科学通报(英文版)

周光召

旬刊

1001-6538

csb@scichina.com

010-64036120

100717

北京东黄城根北街16号

科学通报(英文版)/Journal Chinese Science BulletinEISCI
查看更多>>《科学通报》创刊于1950年,是中国科学院主办、中国科学杂志社承办的自然科学综合性学术刊物,报道自然科学各学科基础理论和应用研究方面具有创新性和和高水平的、具有重要意义的最新研究成果,要求文章的可读性强,能在一个比较宽范的学术领域产生深刻的影响。我们的目标是:成为国内外读者了解中国乃至世界范围的自然科学各研究领域最新成果的主要窗口之一。《科学通报》进入了国际上主要检索系统,如CA,EI,日本《科技速报》和美国科学信息研究所(ISI)的以下系统:Science Citation Index(SCI-CDE),SCISearch,Current Contents(PC&E)和Research Alert。
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    The proton magnetic radius:A new puzzle?

    Yong-Hui LinHans-Werner HammerUlf-G.Mei?ner
    419-421页

    Spatiotemporal differences in tropospheric ozone sensitivity and the impact of"dual carbon"goal

    Yuting LiuGuiqian TangYinghong WangMengtian Cheng...
    422-425页

    The impact of international trade on environmental vulnerability

    Shaojian WangJunyi LiangXiangjie ChenChuanglin Fang...
    426-430页

    Bio-inspired low-carbon building materials:From colonial sandcastles to next-generation constructions

    Qing-Fang GuanShu-Hong Yu
    431-433页

    Exosome-loaded microcarriers for intraocular drug delivery

    Meidie PanZhuohao ZhangQiao WangLuoran Shang...
    434-436页

    Small structures as big solutions to T/NK cells based anti-tumor immunotherapy

    Tingting WangHao ZhangYaobao HanMengxiao Han...
    437-440页

    Reversible manipulation of liquid-liquid phase separation using a chemical-based chemiDroplet

    Chao TianShengpeng WanYi LuPing Wang...
    441-444页

    Changing footprint of the Pacific Decadal Oscillation on global land surface air temperature

    Lili LiangAlan D.ZieglerDeliang ChenPhilippe Ciais...
    445-448页

    An ultrahigh-energy γ-ray bubble powered by a super PeVatron

    LHAASO CollaborationZ.CaoF.Aharo-nianQ.An...
    449-457页
    查看更多>>摘要:We report the detection of a γ-ray bubble spanning at least 100 deg2 in ultra-high energy(UHE)up to a few PeV in the direction of the star-forming region Cygnus X,implying the presence super PeVatron(s)accelerating protons to at least 10 PeV.A log-parabola form with the photon index r(E)=(2.71±0.02)+(0.11±0.02)× log10(E/10 TeV)is found fitting the gamma-ray energy spectrum of the bubble well.UHE sources,"hot spots"correlated with very massive molecular clouds,and a quasi-spherical amorphous γ-ray emitter with a sharp central brightening are observed in the bubble.In the core of~0.5°,spatially associating with a region containing massive OB association(Cygnus OB2)and a microquasar(Cygnus X-3),as well as previously reported multi-TeV sources,an enhanced concentration of UHE y-rays is observed with 2 photons at energies above 1 PeV.The general feature of the bubble,the morphology,and the energy spectrum,are reasonably reproduced by the assumption of a particle accelerator in the core,continuously injecting protons into the ambient medium.

    Three-dimensional,dual-color nanoscopy enabled by migrating photon avalanches with one single low-power CW beam

    Zhimin ZhuYusen LiangQi ZhaoHui Wu...
    458-465页
    查看更多>>摘要:The development of super-resolution fluorescence microscopy is very essential for understanding the physical and biological fundamentals at nanometer scale.However,to date most super-resolution modal-ities require either complicated/costly purpose-built systems such as multiple-beam architectures or complex post-processing procedures with intrinsic artifacts.Achieving three-dimensional(3D)or multi-channel sub-diffraction microscopic imaging using a simple method remains a challenging and struggling task.Herein,we proposed 3D highly-nonlinear super-resolution microscopy using a single-beam excitation strategy,and the microscopy principle was modelled and studied based on the ultrahigh nonlinearity enabled by photon avalanches.According to the simulation,the point spread function of highly nonlinear microscopy is switchable among different modes and can shrink three-dimensionally to sub-diffraction scale at the photon avalanche mode,Experimentally,we demonstrated 3D optical nanoscopy assisted with huge optical nonlinearities in a simple laser scanning configuration,achieving a lateral resolution down to 58 nm(λ/14)and an axial resolution down to 185 nm(λ/5)with one single beam of low-power,continuous-wave,near-infrared laser.We further extended the photon avalanche effect to many other emitters to develop multi-color photon avalanching nanoprobes based on migrating photon avalanche mechanism,which enables us to implement single-beam dual-color sub-diffraction super-resolution microscopic imaging.