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Physica Status Solidi-rapid Research Letters

Physica Status Solidi-rapid Research LettersSCIE

国际简称:PHYS STATUS SOLIDI-R  参考译名:物理状态固体快速研究快报

  • 中科院分区

    4区

  • CiteScore分区

    Q2

  • JCR分区

    Q2

基本信息:
ISSN:1862-6254
E-ISSN:1862-6270
是否OA:未开放
是否预警:否
TOP期刊:否
出版信息:
出版地区:GERMANY
出版商:Wiley-VCH Verlag
出版语言:English
出版周期:Bimonthly
出版年份:2007
研究方向:物理-材料科学:综合
评价信息:
影响因子:2.5
H-index:58
CiteScore指数:5.2
SJR指数:0.655
SNIP指数:0.641
发文数据:
Gold OA文章占比:15.91%
研究类文章占比:96.73%
年发文量:214
自引率:0.0357...
开源占比:0.1514
出版撤稿占比:0
出版国人文章占比:0.25
OA被引用占比:0.0482...
英文简介 期刊介绍 CiteScore数据 中科院SCI分区 JCR分区 发文数据 常见问题

英文简介Physica Status Solidi-rapid Research Letters期刊介绍

Physica status solidi (RRL) - Rapid Research Letters was designed to offer extremely fast publication times and is currently one of the fastest double peer-reviewed publication media in solid state and materials physics. Average times are 11 days from submission to first editorial decision, and 12 days from acceptance to online publication. It communicates important findings with a high degree of novelty and need for express publication, as well as other results of immediate interest to the solid-state physics and materials science community. Published Letters require approval by at least two independent reviewers.

The journal covers topics such as preparation, structure and simulation of advanced materials, theoretical and experimental investigations of the atomistic and electronic structure, optical, magnetic, superconducting, ferroelectric and other properties of solids, nanostructures and low-dimensional systems as well as device applications. Rapid Research Letters particularly invites papers from interdisciplinary and emerging new areas of research.

期刊简介Physica Status Solidi-rapid Research Letters期刊介绍

《Physica Status Solidi-rapid Research Letters》自2007出版以来,是一本物理与天体物理优秀杂志。致力于发表原创科学研究结果,并为物理与天体物理各个领域的原创研究提供一个展示平台,以促进物理与天体物理领域的的进步。该刊鼓励先进的、清晰的阐述,从广泛的视角提供当前感兴趣的研究主题的新见解,或审查多年来某个重要领域的所有重要发展。该期刊特色在于及时报道物理与天体物理领域的最新进展和新发现新突破等。该刊近一年未被列入预警期刊名单,目前已被权威数据库SCIE收录,得到了广泛的认可。

该期刊投稿重要关注点:

Cite Score数据(2024年最新版)Physica Status Solidi-rapid Research Letters Cite Score数据

  • CiteScore:5.2
  • SJR:0.655
  • SNIP:0.641
学科类别 分区 排名 百分位
大类:Physics and Astronomy 小类:Condensed Matter Physics Q2 129 / 434

70%

大类:Physics and Astronomy 小类:General Materials Science Q2 176 / 463

62%

CiteScore 是由Elsevier(爱思唯尔)推出的另一种评价期刊影响力的文献计量指标。反映出一家期刊近期发表论文的年篇均引用次数。CiteScore以Scopus数据库中收集的引文为基础,针对的是前四年发表的论文的引文。CiteScore的意义在于,它可以为学术界提供一种新的、更全面、更客观地评价期刊影响力的方法,而不仅仅是通过影响因子(IF)这一单一指标来评价。

历年Cite Score趋势图

中科院SCI分区Physica Status Solidi-rapid Research Letters 中科院分区

中科院 2023年12月升级版 综述期刊:否 Top期刊:否
大类学科 分区 小类学科 分区
物理与天体物理 4区 MATERIALS SCIENCE, MULTIDISCIPLINARY 材料科学:综合 PHYSICS, APPLIED 物理:应用 PHYSICS, CONDENSED MATTER 物理:凝聚态物理 4区 4区 4区

中科院分区表 是以客观数据为基础,运用科学计量学方法对国际、国内学术期刊依据影响力进行等级划分的期刊评价标准。它为我国科研、教育机构的管理人员、科研工作者提供了一份评价国际学术期刊影响力的参考数据,得到了全国各地高校、科研机构的广泛认可。

中科院分区表 将所有期刊按照一定指标划分为1区、2区、3区、4区四个层次,类似于“优、良、及格”等。最开始,这个分区只是为了方便图书管理及图书情报领域的研究和期刊评估。之后中科院分区逐步发展成为了一种评价学术期刊质量的重要工具。

历年中科院分区趋势图

JCR分区Physica Status Solidi-rapid Research Letters JCR分区

2023-2024 年最新版
按JIF指标学科分区 收录子集 分区 排名 百分位
学科:MATERIALS SCIENCE, MULTIDISCIPLINARY SCIE Q3 257 / 438

41.4%

学科:PHYSICS, APPLIED SCIE Q2 87 / 179

51.7%

学科:PHYSICS, CONDENSED MATTER SCIE Q3 42 / 79

47.5%

按JCI指标学科分区 收录子集 分区 排名 百分位
学科:MATERIALS SCIENCE, MULTIDISCIPLINARY SCIE Q3 267 / 438

39.16%

学科:PHYSICS, APPLIED SCIE Q3 111 / 179

38.27%

学科:PHYSICS, CONDENSED MATTER SCIE Q3 42 / 79

47.47%

JCR分区的优势在于它可以帮助读者对学术文献质量进行评估。不同学科的文章引用量可能存在较大的差异,此时单独依靠影响因子(IF)评价期刊的质量可能是存在一定问题的。因此,JCR将期刊按照学科门类和影响因子分为不同的分区,这样读者可以根据自己的研究领域和需求选择合适的期刊。

历年影响因子趋势图

发文数据

2023-2024 年国家/地区发文量统计
  • 国家/地区数量
  • CHINA MAINLAND232
  • GERMANY (FED REP GER)91
  • USA80
  • Russia61
  • South Korea52
  • Japan43
  • France33
  • Australia27
  • India27
  • Italy21

本刊中国学者近年发表论文

  • 1、Polarization Electric Field in 2D Polar Monolayer Silicon Monochalcogenides SiX (X = S, Se) as Potential Photocatalysts for Water Splitting

    Author: Gu, Di; Chen, Xingyuan; Xu, Xiangfu; Qin, Wen; Tao, Xiaoma; Ouyang, Yifang; Zhu, Weiling

    Journal: PHYSICA STATUS SOLIDI-RAPID RESEARCH LETTERS. 2023; Vol. 17, Issue 1, pp. -. DOI: 10.1002/pssr.202200179

  • 2、Experimental Realization of Spin-Polarized States on Mg3Bi2 Surface

    Author: Ma, Ni; Zhu, Hailong; Jiang, Qi; Huang, Benrui; Li, Kaiyi; Mei, Hongping; Ye, Mao; Qiao, Shan; Li, Ang

    Journal: PHYSICA STATUS SOLIDI-RAPID RESEARCH LETTERS. 2023; Vol. 17, Issue 1, pp. -. DOI: 10.1002/pssr.202200250

  • 3、Antisite Defect Si-C as a Source of the D-I Center in 4H-SiC

    Author: Zhang, Hai-Shan; Gong, Jian; Shi, Lin

    Journal: PHYSICA STATUS SOLIDI-RAPID RESEARCH LETTERS. 2023; Vol. 17, Issue 2, pp. -. DOI: 10.1002/pssr.202200239

  • 4、Fundamental Identification of Defect-Related Electron Trap in Hf1-x Zr (x) O-2 Alloy Gate Dielectric on Silicon: Oxygen Vacancy versus Hydrogen Interstitial

    Author: Liu, Zhu-You; Zhang, Cai-Xin; Cao, Ruyue; Cai, Xuefen; Deng, Hui-Xiong

    Journal: PHYSICA STATUS SOLIDI-RAPID RESEARCH LETTERS. 2023; Vol. 17, Issue 1, pp. -. DOI: 10.1002/pssr.202200316

  • 5、Suppression Effect on the Domain Wall Tilting in Synthetic Antiferromagnetic Racetrack Driven by the Spin-Orbit Torque

    Author: He, Xiaodong; Yun, Jijun; Zhang, Jianrong; Zhai, Yongbo; Guo, Xi; Zhang, Xu; Cui, Baoshan; Ren, Yang; Zuo, Yalu; Xi, Li

    Journal: PHYSICA STATUS SOLIDI-RAPID RESEARCH LETTERS. 2023; Vol. 17, Issue 1, pp. -. DOI: 10.1002/pssr.202200278

  • 6、Design and Functional Test of Transistor Inverter Based on Polyvinyl Alcohol and Graphene Oxide Electrolyte

    Author: Guo, Liqiang; Wang, Weilin; Li, Zhiyuan; Dong, Qian; Han, Hui; Zhang, Zhongqiang; Cheng, Guanggui; Ding, Jianning; Xue, Qing

    Journal: PHYSICA STATUS SOLIDI-RAPID RESEARCH LETTERS. 2023; Vol. 17, Issue 1, pp. -. DOI: 10.1002/pssr.202200260

  • 7、Atmospheric All-Solution-Processed Perovskite Light-Emitting Diodes

    Author: Cheng, Pengpeng; Liu, Zehan; Kang, Ruyan; Zhou, Jian; Zhao, Jia; Zuo, Zhiyuan

    Journal: PHYSICA STATUS SOLIDI-RAPID RESEARCH LETTERS. 2023; Vol. 17, Issue 1, pp. -. DOI: 10.1002/pssr.202200295

  • 8、A Novel Insight into the Strain Effect of T-2g Mode Splitting and Bandgap in Diamond

    Author: Liu, Yonghui; Liu, Sheng; Robertson, John; Guo, Yuzheng

    Journal: PHYSICA STATUS SOLIDI-RAPID RESEARCH LETTERS. 2023; Vol. 17, Issue 1, pp. -. DOI: 10.1002/pssr.202200344

投稿常见问题

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