summer阿超
Nature系列的影响因子普遍比较高。2021年预测的影响因子小于20的期刊仅有2本(2020年3本)!预测影响因子大于50的期刊有6本(2020年5本)!影响因子涨幅最大的期刊是Nature Medicine,涨幅高达!该期刊的影响因子也从2020年的跃升至!排名一跃升至笔者统计的Nature系列榜首(2020年第5名)!分析认为,受全球新冠疫情的影响,医药类期刊出现较大涨幅属于“正常”。影响因子跌幅最大的期刊是Nature Catalysis,跌幅为!该期刊的影响因子也从2020年的跌至,整体排名亦有所下降!作为最近两年大火的催化领域顶刊,该期刊影响因子的下降是否说明了前沿催化的“降温”呢?让我们拭目以待!值得注意的是,“老大哥”Nature的影响因子虽然有所增加(从增长到,涨幅为),但依然不敌医药类子刊,甚至不敌Nature Reviews Materials,一方面说明这些期刊“青出于蓝而胜于蓝”,另一方面也说明医药和材料领域的火热!此外,从表格可以看到,Nature Communications 2021年的发文量正式突破7000大关!然而,该期刊的影响因子反而有所上升,从上升到,增幅为,也算是打破了“Nature水刊”的谣言。
十米之上
不重合。相对于 Nature 正刊这个综合性期刊,Nature 子刊大多聚焦于某一个领域的研究发现和综述,随着科学的发展,其数目也在不断增多,截止 2021 年 2 月, 上的期刊列表里已经显示有 155 种期刊。目前,Nature 出版集团更名为 Nature Portfolio,并和 Springer 出版集团进一步合并成了 Nature Springer 集团,提供超过 3000 种范围广泛的一系列期刊,是当之无愧的科研服务商巨无霸。Nature 旗下的期刊,除了正刊外,可以被分为以下几类:第一类,是冠名「Nature」的期刊(Nature-branded journals),通俗来说就是杂志名以 Nature 打头的,也就是我们通常理解的 Nature 子刊。进一步来说,分有两种系列:第一种是研究系列,比如 Nature Chemistry,Nature Medicine。第二种是综述系列,比如 Nature Reviews Cancer,Nature Reviews Microbiology。目前,两者总共有 59 种期刊,其中研究系列 38 种,综述系列 21 种。第二类,是除了正刊外的一些综合性期刊。比如大名鼎鼎的 Nature Communications,以及 Scientific Reports。虽然国内这两种期刊一直在风口浪尖,但 Nature 对它们非常重视,在网站里突出显示,并单独给出杂志网站入口。此外是一些其他期刊,我们中国人熟知的 Cell Research,Oncogene 等杂志就在其中,目前总共已经有 96 种,占据了总刊数的一半还多。其中还包括一些小系列,比如 communication 系列期刊,NPJ(Nature Partner Journals)系列期刊。
彷徨爱情
编译 | 未玖
Nature , 21 October 2021, VOL 598, ISSUE 7881
《自然》 2021年10月21日,第598卷,7881期
天文学 Astronomy
Carbon monoxide gas produced by a giant impact in the inner region of a young system
年轻星系内部发生巨大碰撞产生一氧化碳气体
作者:Tajana Schneiderman, Luca Matrà, Alan P. Jackson, Grant M. Kennedy, Quentin Kral, Sebastián Marino, et al.
链接:
摘要
类地行星形成的模型预测,行星组合的最后阶段(年轻的原行星盘扩散之后持续的数千万年间)主要发生行星碰撞。正是通过这些巨大的撞击,像年轻的地球这样的行星才能成长到最终质量,并实现长期稳定的轨道结构。
一个关键预测是这些撞击会产生碎片。到目前为止,关于撞击后碎片最令人信服的观测证据来自于附近2300万年前的A型恒星HD172555周围的行星系。该星系显示大量细尘,具有异常陡峭的粒度分布和非典型的尘埃组成,此前将其归因于超高速撞击或巨大的小行星带。
研究组报道了一个与HD172555周围的尘埃碎片共轨的一氧化碳气体环的光谱分辨率探测结果,气体环与HD172555相距大约6到9个天文单位,类似于太阳系的外类地行星区域。
综上所述,尘埃和一氧化碳的检测结果有助于理解大型、易挥发性天体之间的巨大碰撞。这表明行星级的碰撞类似于月球形成的碰撞,可释放大量的气体和碎片,并且这种气体是可观测的,为了解年轻行星的组成提供了一个窗口。
Abstract
Models of terrestrial planet formation predict that the final stages of planetary assembly—lasting tens of millions of years beyond the dispersal of young protoplanetary disks—are dominated by planetary collisions. It is through these giant impacts that planets like the young Earth grow to their final mass and achieve long-term stable orbital configurations. A key prediction is that these impacts produce debris. So far, the most compelling observational evidence for post-impact debris comes from the planetary system around the nearby 23-million-year-old A-type star HD 172555. This system shows large amounts of fine dust with an unusually steep size distribution and atypical dust composition, previously attributed to either a hypervelocity impact or a massive asteroid belt. Here we report the spectrally resolved detection of a carbon monoxide gas ring co-orbiting with dusty debris around HD 172555 between about six and nine astronomical units—a region analogous to the outer terrestrial planet region of our Solar System. Taken together, the dust and carbon monoxide detections favour a giant impact between large, volatile-rich bodies. This suggests that planetary-scale collisions, analogous to the Moon-forming impact, can release large amounts of gas as well as debris, and that this gas is observable, providing a window into the composition of young planets.
材料科学 Materials Science
Half- and quarter-metals in rhombohedral trilayer graphene
菱面体三层石墨烯中的半金属和四分之一金属
作者:Haoxin Zhou, Tian Xie, Areg Ghazaryan, Tobias Holder, James R. Ehrets, Eric M. Spanton, et al.
链接:
摘要
铁磁性在电子占据高度局域化d轨道的过渡金属化合物中最为常见。然而,在低密度二维电子系统中也可能出现铁磁有序。
研究组证明了菱面体三层石墨烯中的门调谐范霍夫奇点,驱动电子系统的自发铁磁极化转变为一种或多种自旋和谷型。
通过电容和输运测量,研究组观察到调谐至相位间载流子浓度和电位移场的一系列跃迁,其中量子振荡具有四重、二重或一重简并度,分别对应自旋和谷简并的“正常金属态”、自旋极化的“半金属态”以及自旋极化和谷极化的“四分之一金属态”。
对于电子掺杂,包含谷各向异性相互作用的唯象斯通纳模型很好地捕捉到了数据的显著特征。对于空穴填充,研究组观察到一个更丰富的相图,其特征是费米面拓扑中对称性破缺和跃迁的微妙相互作用。
最后,研究组通过旋转对齐的六方氮化硼衬底引入莫尔超晶格。值得注意的是,研究组发现同位旋序仅受到弱扰动,当迁移的半金属态或四分之一金属态填充半超晶格带或四分之一超晶格带时,莫尔势会催化拓扑非平凡间隙态的形成。
该结果表明,菱面体石墨烯是一个多体理论控制测试的理想平台,并揭示了莫尔材料的磁性本质上是迁移的。
Abstract
Ferromagnetism is most common in transition metal compounds where electrons occupy highly localized d orbitals. However, ferromagnetic order may also arise in low-density two-dimensional electron systems. Here we show that gate-tuned van Hove singularities in rhombohedral trilayer graphene drive spontaneous ferromagnetic polarization of the electron system into one or more spin and valley flavours. Using capacitance and transport measurements, we observe a cascade of transitions tuned to the density and electronic displacement field between phases in which quantum oscillations have fourfold, twofold or onefold degeneracy, associated with a spin- and valley-degenerate normal metal, spin-polarized ‘half-metal’, and spin- and valley-polarized ‘quarter-metal’, respectively. For electron doping, the salient features of the data are well captured by a phenomenological Stoner model that includes valley-anisotropic interactions. For hole filling, we observe a richer phase diagram featuring a delicate interplay of broken symmetries and transitions in the Fermi surface topology. Finally, we introduce a moiré superlattice using a rotationally aligned hexagonal boron nitride substrate. Remarkably, we find that the isospin order is only weakly perturbed, with the moiré potential catalysing the formation of topologically nontrivial gapped states whenever itinerant half- or quarter-metal states occur at half- or quarter-superlattice band filling. Our results show that rhombohedral graphene is an ideal platform for well-controlled tests of many-body theory, and reveal magnetism in moiré materials to be fundamentally itinerant in nature.
Superconductivity in rhombohedral trilayer graphene
菱面体三层石墨烯的超导性
作者:Haoxin Zhou, Tian Xie, Takashi Taniguchi, Kenji Watanabe & Andrea F. Young.
链接:
摘要
在一个干净的二维器件中通过电场效应获得超导性是纳米电子学的一个核心目标。最近,石墨烯莫尔异质结构已实现超导性;然而,其中许多结构在机械上并不稳定,实验显示出强无序特征。
研究组报道了在亚开尔文温度下表现为低电阻率或零电阻率的晶体菱面三层石墨烯(一种结构上亚稳态的碳同素异形体)的超导性。超导性发生在两个不同的门调谐区(SC1和SC2),且深度在由平均自由程和超导态相干长度之比定义的干净极限内。
量子振荡对常态费米面的映射显示,这两种超导体都来自环形费米海,并且接近同位旋对称性破缺转变,其中费米面简并度发生变化。SC1从顺磁正常态出现,而SC2则从自旋极化、谷简并的半金属态中出现,且违反了面内磁场的泡利极限至少一个数量级。
研究组讨论了该结果的各种机制,包括传统的声子介导配对,近同位旋序波动产生的配对,以及环形费米液体的固有不稳定性导致的配对。
研究组为干净且结构简单的二维金属中超导性的观察提供了一个模型系统,用于测试相互竞争的超导理论模型,而不会出现建模混乱的复杂情况,同时使基于相关电子现象和弹道电子输运的新型场效应控制电子器件成为可能。
Abstract
To access superconductivity via the electric field effect in a clean, two-dimensional device is a central goal of nanoelectronics. Recently, superconductivity has been realized in graphene moiré heterostructures; however, many of these structures are not mechanically stable, and experiments show signatures of strong disorder. Here we report the observation of superconductivity—manifesting as low or vanishing resistivity at sub-kelvin temperatures—in crystalline rhombohedral trilayer graphene, a structurally metastable carbon allotrope. Superconductivity occurs in two distinct gate-tuned regions (SC1 and SC2), and is deep in the clean limit defined by the ratio of mean free path and superconducting coherence length. Mapping of the normal state Fermi surfaces by quantum oscillations reveals that both superconductors emerge from an annular Fermi sea, and are proximal to an isospin-symmetry-breaking transition where the Fermi surface degeneracy changes. SC1 emerges from a paramagnetic normal state, whereas SC2 emerges from a spin-polarized, valley-unpolarized half-metal and violates the Pauli limit for in-plane magnetic fields by at least one order of magnitude. We discuss our results in view of several mechanisms, including conventional phonon-mediated pairing, pairing due to fluctuations of the proximal isospin order, and intrinsic instabilities of the annular Fermi liquid. Our observation of superconductivity in a clean and structurally simple two-dimensional metal provides a model system to test competing theoretical models of superconductivity without the complication of modelling disorder, while enabling new classes of field-effect controlled electronic devices based on correlated electron phenomena and ballistic electron transport.
Dexterous magnetic manipulation of conductive non-magnetic objects
导电非磁性物体的灵巧磁操控
作者:Lan N. Pham, Griffin F. Tabor, Ashkan Pourkand, Jacob L. B. Aman, Tucker Hermans & Jake J. Abbott.
链接:
摘要
对铁磁物体的灵巧磁操控已很好建立,根据物体的几何结构,可能有三到六个自由度。有些物体需要非接触式灵巧操作,它们不含有大量的铁磁性材料,但含有导电材料。
时变磁场在导电材料中产生涡流,涡流与磁场相互作用产生力和力矩。这种现象曾被用于诱导阻力,以减少物体通过静态场时的运动,或使用动态场在单个方向上对物体施加力,但尚未被用于对导电物体进行如铁磁物体那样的灵活操控。
研究组表明,通过使用多个旋转磁偶极子场可在六个自由度下操控导电物体。利用量纲分析,结合多物理场数值模拟和实验验证,研究组描述了在旋转磁偶极子场中导电球体上产生的力和力矩。利用该模型,研究组在仿真和物理实验中实现了灵活操控。
Abstract
Dexterous magnetic manipulation of ferromagnetic objects is well established, with three to six degrees of freedom possible depending on object geometry. There are objects for which non-contact dexterous manipulation is desirable that do not contain an appreciable amount of ferromagnetic material but do contain electrically conductive material. Time-varying magnetic fields generate eddy currents in conductive materials, with resulting forces and torques due to the interaction of the eddy currents with the magnetic field. This phenomenon has previously been used to induce drag to reduce the motion of objects as they pass through a static field, or to apply force on an object in a single direction using a dynamic field, but has not been used to perform the type of dexterous manipulation of conductive objects that has been demonstrated with ferromagnetic objects. Here we show that manipulation, with six degrees of freedom, of conductive objects is possible by using multiple rotating magnetic dipole fields. Using dimensional analysis, combined with multiphysics numerical simulations and experimental verification, we characterize the forces and torques generated on a conductive sphere in a rotating magnetic dipole field. With the resulting model, we perform dexterous manipulation in simulations and physical experiments.
地球科学 Earth Science
Pliocene decoupling of equatorial Pacific temperature and pH gradients
上新世赤道太平洋温度和pH梯度的解耦
作者:Madison G. Shankle, Natalie J. Burls, Alexey V. Fedorov, Matthew D. Thomas, Wei Liu, Donald E. Penman, et al.
链接:
摘要
赤道太平洋的海洋动力学驱动热带气候模式,影响全球海洋和陆地生态系统。该地区如何应对全球变暖对全球气候、经济稳定和生态系统 健康 具有深远影响。因此,许多研究调查了上新世(530-260万年前)和中新世晚期(约600万年前)期间的赤道太平洋动力学,作为该地区在全球变暖下未来行为的模拟。
这一时期的古海洋学记录提出了一个明显的悖论,即沿着赤道太平洋东西向的海面温度梯度降低表明风驱动的上升流减少,这与东太平洋生物生产力增强的证据相冲突,后者通常由更强的上升流引起。
研究组通过提供新的证据,证明上新世早期/中新世晚期与现代环流体制完全不同,导致更古老、更酸性和更富营养的水到达赤道太平洋,从而调和了这些观察结果。这些结果为上新世早期/中新世晚期东太平洋生产力的提高提供了一种新机制,即使在风力驱动上升流较弱的情况下也是如此。
该发现为赤道太平洋动力学提供了新的线索,并有助于限制它们在不久的将来可能发生的变化,因为预计下个世纪地球将达到上新世那样的变暖水平。
Abstract
Ocean dynamics in the equatorial Pacific drive tropical climate patterns that affect marine and terrestrial ecosystems worldwide. How this region will respond to global warming has profound implications for global climate, economic stability and ecosystem health. As a result, numerous studies have investigated equatorial Pacific dynamics during the Pliocene (– million years ago) and late Miocene (around 6 million years ago) as an analogue for the future behaviour of the region under global warming. Palaeoceanographic records from this time present an apparent paradox with proxy evidence of a reduced east–west sea surface temperature gradient along the equatorial Pacific—indicative of reduced wind-driven upwelling—conflicting with evidence of enhanced biological productivity in the east Pacific that typically results from stronger upwelling. Here we reconcile these observations by providing new evidence for a radically different-from-modern circulation regime in the early Pliocene/late Miocene that results in older, more acidic and more nutrient-rich water reaching the equatorial Pacific. These results provide a mechanism for enhanced productivity in the early Pliocene/late Miocene east Pacific even in the presence of weaker wind-driven upwelling. Our findings shed new light on equatorial Pacific dynamics and help to constrain the potential changes they will undergo in the near future, given that the Earth is expected to reach Pliocene-like levels of warming in the next century.
Direct radiative effects of airborne microplastics
空气中微塑料的直接辐射效应
作者:Laura E. Revell, Peter Kuma, Eric C. Le Ru, Walter R. C. Somerville & Sally Gaw
链接:
摘要
微塑料现在被认为是大气中广泛存在的污染物,由于其体积小、密度低,可以随风绕地球传播。大气气溶胶,如矿物粉尘和其他类型的空气悬浮颗粒物,通过吸收和散射辐射(直接辐射效应)影响地球气候,其影响通常用有效辐射强迫(ERF)度量进行量化。然而,空气中微塑料的辐射效应及其对全球气候的影响尚不清楚。
研究组计算了空气中微塑料的光学性质和直接辐射效应(不包括气溶胶-云相互作用)。假设平均表面浓度为1个微塑料颗粒/ m3 ,且垂直分布在10公里高空,则计算出当今大气中空气微塑料的ERF为 mW/ m2 。
然而,微塑料的地理和垂直分布存在很大的不确定性。假设它们局限于边界层,短波效应占主导地位,微塑料ERF约为 mW/ m2 。与气溶胶-辐射相互作用引起的总ERF相比( 至 W/ m2 ),微塑料ERF很小。
然而,塑料产量在过去70年中迅速增长;如果不认真改革塑料生产和废物管理实践,空气中微塑料的丰度和ERF将继续增加。
Abstract
Microplastics are now recognized as widespread contaminants in the atmosphere, where, due to their small size and low density, they can be transported with winds around the Earth. Atmospheric aerosols, such as mineral dust and other types of airborne particulate matter, influence Earth’s climate by absorbing and scattering radiation (direct radiative effects) and their impacts are commonly quantified with the effective radiative forcing (ERF) metric. However, the radiative effects of airborne microplastics and associated implications for global climate are unknown. Here we present calculations of the optical properties and direct radiative effects of airborne microplastics (excluding aerosol–cloud interactions). The ERF of airborne microplastics is computed to be milliwatts per square metre in the present-day atmosphere assuming a uniform surface concentration of 1 microplastic particle per cubic metre and a vertical distribution up to 10 kilometres altitude. However, there are large uncertainties in the geographical and vertical distribution of microplastics. Assuming that they are confined to the boundary layer, shortwave effects dominate and the microplastic ERF is approximately milliwatts per square metre. Compared with the total ERF due to aerosol–radiation interactions ( to watts per square metre), the microplastic ERF is small. However, plastic production has increased rapidly over the past 70 years; without serious attempts to overhaul plastic production and waste-management practices, the abundance and ERF of airborne microplastics will continue to increase.
在《Nature》上发表一篇论文基本上属于大学教授级别(水平)。 《Nature》和《Science》属于顶尖科学杂志,按SCI影响因子算两杂志都有30多分。
是全球著名的学术类期刊英国著名杂志《Nature》是世界上最早的国际性科技期刊,自从1869年创刊以来,始终如一地报道和评论全球科技领域里最重要的突破。影响因子
一、Protein & Cell期刊历史以及定位 Protein & Cell创刊于本世纪初,其由高等教育出版社、北京生科院和中国生物物理学会联合创办,由
在《Nature》上发表一篇论文基本上属于大学教授级别(水平)。 《Nature》和《Science》属于顶尖科学杂志,按SCI影响因子算两杂志都有30多分。
转自: 2021年11月3日, Nature 杂志在线发表了来自 德国马普研究所Wiebke Mohr课题组 题为“ Terrestrial-type