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Physical Review Research

Physical Review ResearchSCIE

國(guó)際簡(jiǎn)稱:PHYS REV RES  參考譯名:物理評(píng)論研究

  • CiteScore分區(qū)

    Q1

  • JCR分區(qū)

    Q1

基本信息:
ISSN:2643-1564
是否OA:開放
是否預(yù)警:否
出版信息:
出版地區(qū):United States
出版商:American Physical Society
出版語言:English
研究方向:PHYSICS, MULTIDISCIPLINARY
評(píng)價(jià)信息:
影響因子:3.5
CiteScore指數(shù):8.6
SJR指數(shù):1.69
SNIP指數(shù):1.08
發(fā)文數(shù)據(jù):
Gold OA文章占比:98.02%
研究類文章占比:99.45%
年發(fā)文量:1082
英文簡(jiǎn)介 期刊介紹 CiteScore數(shù)據(jù) JCR分區(qū) 發(fā)文數(shù)據(jù) 常見問題

英文簡(jiǎn)介Physical Review Research期刊介紹

Physical Review Research covers all subfields of physics, including but not limited to classical and quantum physics, atomic, molecular, and optical physics, condensed matter physics, biophysics, computational physics, and interdisciplinary research areas such as the application of artificial intelligence and machine learning in physics. This journal aims to rapidly disseminate high-quality research results in the field of physics and promote academic exchange worldwide through an open access model.

The importance of journals lies in providing a platform for publishing innovative physics research, especially for those studies that may not be quickly accepted by traditional subscription journals. One of the characteristics of a journal is its review speed, which aims to shorten the time from submission to publication in order to accelerate the dissemination of scientific discoveries. It is an important open access journal in the field of physics, providing physicists with a channel to publish and access the latest research, while also providing the public with opportunities to engage with cutting-edge science in physics.

期刊簡(jiǎn)介Physical Review Research期刊介紹

《Physical Review Research》該刊近一年未被列入預(yù)警期刊名單,目前已被權(quán)威數(shù)據(jù)庫(kù)SCIE收錄,得到了廣泛的認(rèn)可。

該期刊投稿重要關(guān)注點(diǎn):

  • 預(yù)計(jì)審稿時(shí)間: 15 Weeks
  • SCIE
  • 非預(yù)警

Cite Score數(shù)據(jù)(2024年最新版)Physical Review Research Cite Score數(shù)據(jù)

  • CiteScore:8.6
  • SJR:1.689
  • SNIP:1.076
學(xué)科類別 分區(qū) 排名 百分位
大類:Physics and Astronomy 小類:General Physics and Astronomy Q1 29 / 243

88%

CiteScore 是由Elsevier(愛思唯爾)推出的另一種評(píng)價(jià)期刊影響力的文獻(xiàn)計(jì)量指標(biāo)。反映出一家期刊近期發(fā)表論文的年篇均引用次數(shù)。CiteScore以Scopus數(shù)據(jù)庫(kù)中收集的引文為基礎(chǔ),針對(duì)的是前四年發(fā)表的論文的引文。CiteScore的意義在于,它可以為學(xué)術(shù)界提供一種新的、更全面、更客觀地評(píng)價(jià)期刊影響力的方法,而不僅僅是通過影響因子(IF)這一單一指標(biāo)來評(píng)價(jià)。

歷年Cite Score趨勢(shì)圖

JCR分區(qū)Physical Review Research JCR分區(qū)

2023-2024 年最新版
按JIF指標(biāo)學(xué)科分區(qū) 收錄子集 分區(qū) 排名 百分位
學(xué)科:PHYSICS, MULTIDISCIPLINARY ESCI Q1 25 / 110

77.7%

按JCI指標(biāo)學(xué)科分區(qū) 收錄子集 分區(qū) 排名 百分位
學(xué)科:PHYSICS, MULTIDISCIPLINARY ESCI Q1 22 / 110

80.45%

JCR分區(qū)的優(yōu)勢(shì)在于它可以幫助讀者對(duì)學(xué)術(shù)文獻(xiàn)質(zhì)量進(jìn)行評(píng)估。不同學(xué)科的文章引用量可能存在較大的差異,此時(shí)單獨(dú)依靠影響因子(IF)評(píng)價(jià)期刊的質(zhì)量可能是存在一定問題的。因此,JCR將期刊按照學(xué)科門類和影響因子分為不同的分區(qū),這樣讀者可以根據(jù)自己的研究領(lǐng)域和需求選擇合適的期刊。

歷年影響因子趨勢(shì)圖

本刊中國(guó)學(xué)者近年發(fā)表論文

  • 1、Understanding the wetting of transition metal dichalcogenides from an ab initio perspective

    Author: Li, Siheng; Liu, Keyang; Klimes, Jiri; Chen, Ji

    Journal: PHYSICAL REVIEW RESEARCH. 2023; Vol. 5, Issue 2, pp. -. DOI: 10.1103/PhysRevResearch.5.023018

  • 2、Continuous Raman sideband cooling beyond the Lamb-Dicke regime in a trapped ion chain

    Author: Wu, Qiming; Shi, Yue; Zhang, Jiehang

    Journal: PHYSICAL REVIEW RESEARCH. 2023; Vol. 5, Issue 2, pp. -. DOI: 10.1103/PhysRevResearch.5.023022

  • 3、Statistical physics of deep neural networks: Initialization toward optimal channels

    Author: Weng, Kangyu; Cheng, Aohua; Zhang, Ziyang; Sun, Pei; Tian, Yang

    Journal: PHYSICAL REVIEW RESEARCH. 2023; Vol. 5, Issue 2, pp. -. DOI: 10.1103/PhysRevResearch.5.023023

  • 4、Chebyshev pseudosite matrix product state approach for the spectral functions of electron-phonon coupling systems

    Author: Zhao, Pei -Yuan; Ding, Ke; Yang, Shuo

    Journal: PHYSICAL REVIEW RESEARCH. 2023; Vol. 5, Issue 2, pp. -. DOI: 10.1103/PhysRevResearch.5.023026

  • 5、Temperature-dependent and magnetism-controlled Fermi surface changes in magnetic Weyl semimetals

    Author: Zhang, Nan; Ding, Xianyong; Zhan, Fangyang; Li, Houpu; Li, Hongyu; Tang, Kaixin; Qian, Yingcai; Pan, Senyang; Xiao, Xiaoliang; Zhang, Jinglei; Wang, Rui; Xiang, Ziji; Chen, Xianhui

    Journal: PHYSICAL REVIEW RESEARCH. 2023; Vol. 5, Issue 2, pp. -. DOI: 10.1103/PhysRevResearch.5.L022013

  • 6、Suppressing mechanical dissipation of diamagnetically levitated oscillator via engineering conductive geometry

    Author: Xie, Han; Li, Yanan; Li, Rui; Leng, Yinchun; Chen, Yiming; Wang, Lei; Long, Dingjiang; Bian, Xiang; Duan, Chang-Kui; Yin, Peiran; Huang, Pu; Du, Jiangfeng

    Journal: PHYSICAL REVIEW RESEARCH. 2023; Vol. 5, Issue 1, pp. -. DOI: 10.1103/PhysRevResearch.5.013030

  • 7、Quantum Monte Carlo study of the attractive kagome-lattice Hubbard model

    Author: Zhu, Xingchuan; Han, Wanpeng; Feng, Shiping; Guo, Huaiming

    Journal: PHYSICAL REVIEW RESEARCH. 2023; Vol. 5, Issue 2, pp. -. DOI: 10.1103/PhysRevResearch.5.023037

  • 8、Eigenvalue knots and their isotopic equivalence in three-state non-Hermitian systems

    Author: Li, Zhen; Ding, Kun; Ma, Guancong

    Journal: PHYSICAL REVIEW RESEARCH. 2023; Vol. 5, Issue 2, pp. -. DOI: 10.1103/PhysRevResearch.5.023038

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