SOLID STATE COMMUNICATIONS固体通讯

SOLID STATE COMMUNICATIONS(英文缩写 SOLID STATE COMMUN),ISSN 0038-1098,eISSN 1879-2766,中文译名:固体通讯 是一本学术期刊。本页汇总该期刊的最新影响因子、分区信息以及最新收录于 PubMed 的文献,帮助您快速了解期刊全貌。

2026 年数据 · 影响因子
2.800
JCR 分区
Q3
CAS 分区
B4
近一年发文量
1
本站 PubMed 收录统计

发文量统计区间:2025-09-28 至 2026-09-28,按本站收录文献的发表日期统计。

ISSN: 0038-1098 · eISSN: 1879-2766 · 缩写: SOLID STATE COMMUN ·中文: 固体通讯

期刊介绍

选择期刊介绍栏目

期刊简介

Solid State Communications 是一本聚焦凝聚态物理与固体物理基础问题的国际期刊,涵盖材料电子结构、输运性质、磁性、超导及低维体系等方向。读者主要为高校与科研院所从事基础物理和材料物理研究的学者、博士后及研究生。该刊强调对物理机制的清晰阐述,适合报道具有明确物理意义的新现象与理论进展。

研究方向

主要发表固体物理与凝聚态物理领域的研究,包括电子结构、光谱、输运、磁学、超导、半导体及纳米体系等主题。论文类型以短篇快报和常规研究论文为主,也接受理论分析与实验结合的工作,强调结果的新颖性和物理内涵。

期刊特色

研究取向偏重基础物理问题的快速交流,篇幅通常较短,要求结论明确、论证紧凑。适合有阶段性重要发现、希望快速公开初步结果的研究者,也适合关注凝聚态物理前沿动态的读者跟踪领域进展。

投稿难度

投稿难度中等偏上,对物理新颖性和数据可靠性要求较高,但并非仅凭分区可判断录用难易。建议在投稿前明确核心物理贡献,完善实验或计算细节,并针对审稿人可能关注的机制解释与对比文献做好充分准备。

历年影响因子趋势

JCR 数据年份影响因子JCR 分区
20211.934Q3
20222.100Q3
20232.100Q3
20242.400Q3
20252.800Q3

SOLID STATE COMMUNICATIONS 最新收录文献

  1. JCR分区: Q3 CAS分区: B4 影响因子: 2.8

    1. {"_":"Structural and Magnetic Properties of Vacuum and Air annealed CoFeO Nanoparticles.","sub":["2","4"]}

    作者:
    Balaji Srikanth Ragunath, A Thileeba, K R S Preethi Meher, Karthik Chinnathambi, Ayyappan Sathya
    日期:
    2025-10-01

    CoFeO (CFO) nanoparticles (NPs) were synthesized by co-precipitation technique and annealed up to 1273K under air and vacuum atmospheres. X-ray diffraction (XRD) analysis of pristine, vacuum and air - annealed samples confirms the spinel structure without any secondary phases. Transmission electron microscopy (TEM) of pristine CFO NPs confirms a wider distribution with an average particle size of 26 ± 7 nm. Further, the estimated activation energy for the growth of CFO NPs under vacuum and air atmosphere is 14.5 kJ/mol and 20.4 kJ/mol respectively. A relative decrease in activation energy for the vacuum - annealed samples suggest part of the thermal energy is utilized for cation migration between the interstitial sites of the spinel structure. Further, the cation migration is unambiguously confirmed by Raman spectroscopy. This study further reveals that the improved saturation magnetization upon vacuum annealing (from 47 emu/g to 80 emu/g) compared to air annealing (76 emu/g) is mainly due to the cation migration and the creation of oxygen vacancies.

  2. JCR分区: Q3 CAS分区: B4 影响因子: 2.8

    2. Analytical modeling of symmetry breaking in extraordinary optoconductance.

    作者:
    K A Wieland, S A Solin
    日期:
    2008-04-01

    Extraordinary optoconductance (EOC) devices with symmetric leads have been shown to have a symmetric positional dependence when exposed to focused illumination. While advantageous for a position sensitive detector (PSD), this symmetric positional dependence, when the device is uniformly illuminated, leads to a minimization of the output voltage. Here, with the aid of a previously employed point charge model, we address two ways to break the symmetry and recover the output signal. The first is to impose uniform illumination but only on half the sample. This method has practical limitations as the device is miniaturized to the nanoscale. The second is via asymmetric placement of the voltage probes in a four-probe measurement. Crucial to the discussion is the effect of the surface charge density. Several ways of modeling the induced surface charge density are presented. Utilizing the above described approach, optimal asymmetric lead positions are found.

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