Photonics — the scientific study and application of light — has evolved to become a key technology behind many devices found in the modern home, factory and research lab. Today, the field is both a Nobel-prize-winning science and a billion-dollar industry, underpinning applications such as fibre-optic communication, data storage, flat-panel displays and materials processing. Nature Photonics is a monthly journal dedicated to this exciting field and publishes top-quality, peer-reviewed research in all areas of light generation, manipulation and detection. Coverage extends from research into the fundamental properties of light and how it interacts with matter through to the latest designs of optoelectronic device and emerging applications that exploit photons. The journal covers topics including: Lasers, LEDs and other light sources Imaging, detectors and sensors Optoelectronic devices and components Novel materials and engineered structures Physics of light propagation, interaction and behaviour Quantum optics and cryptography Ultrafast photonics Biophotonics Optical data storage Spectroscopy Fibre optics and optical communications Solar energy and photovoltaics Displays Terahertz technology Nonlinear optics Plasmonics Nanophotonics X-rays In common with other Nature Research journals in the physical sciences, Nature Photonics publishes review articles, research papers, News and Views pieces and research highlights summarizing the latest scientific findings in optoelectronics. This is complemented by a unique mix of articles dedicated to the business side of the industry covering areas such as technology commercialization and market analysis.
光子学-光的科学研究和应用已经发展成为许多设备发现背后的关键技术在现代家庭,工厂和研究实验室。今天,既是一个获诺贝尔奖的科学领域和一个数十亿美元的产业,支撑应用,如光纤通信、数据存储、平板显示器和材料处理。 《自然光子学》是一本月刊,致力于这一令人兴奋的领域,出版高质量的同行评议研究,在所有领域的光产生,操作和检测。 涵盖范围从研究光的基本特性和它如何与物质相互作用,到最新的光电设备设计和利用光子的新兴应用。 该杂志涵盖的主题包括: 激光、led和其他光源 成像,探测器和传感器 光电器件及元件 新型材料和工程结构 光传播、相互作用和行为的物理学 量子光学和密码学 超快光子 生物光子学 光学数据存储 光谱学 光纤和光通信 太阳能和光伏 显示 太赫兹技术 非线性光学 等离子 纳米光子学 x射线 自然光子学与物理科学领域的其他自然研究期刊一样,出版评论文章、研究论文、新闻和观点文章,以及总结光电子学最新科学发现的研究重点。此外,还有一些专门针对行业业务方面的独特文章,涵盖了技术商业化和市场分析等领域。
期刊ISSN
|
1749-4885 |
最新的影响因子
|
35 |
最新CiteScore值
|
21.95 |
最新自引率
|
1.70% |
期刊官方网址
|
http://www.nature.com/nphoton/index.html |
期刊投稿网址
|
http://mts-nphot.nature.com/cgi-bin/main.plex |
通讯地址
|
NATURE PUBLISHING GROUP, MACMILLAN BUILDING, 4 CRINAN ST, LONDON, ENGLAND, N1 9XW |
偏重的研究方向(学科)
|
物理-光学 |
出版周期
|
Monthly |
平均审稿速度
|
偏慢,4-8周 |
出版年份
|
2007 |
出版国家/地区
|
ENGLAND |
是否OA
|
No |
SCI期刊coverage
|
Science Citation Index Expanded(科学引文索引扩展) |
NCBI查询
|
PubMed Central (PMC)链接 全文检索(pubmed central) |
最新中科院JCR分区
|
大类(学科)
小类(学科)
JCR学科排名
物理
OPTICS(光学) 1区
PHYSICS, APPLIED(物理学,应用) 1区
1/94
2/146
|
|||||||
最新的影响因子
|
35 | |||||||
最新公布的期刊年发文量 |
|
|||||||
总被引频次 | 43932 | |||||||
特征因子 | 0.116060 | |||||||
影响因子趋势图 |
2007年以来影响因子趋势图(整体平稳趋势)
|
最新CiteScore值
|
21.95
=
引文计数(2018)
文献(2015-2017)
=
13985次引用
637篇文献
|
||||||||||
文献总数(2014-2016) | 637 | ||||||||||
被引用比率
|
71% | ||||||||||
SJR
|
16.462 | ||||||||||
SNIP
|
9.159 | ||||||||||
CiteScore排名
|
|
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CiteScore趋势图 |
CiteScore趋势图
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scopus涵盖范围 |
scopus趋势图
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本刊同分区等级的相关期刊
|
|
期刊名称 | IF值 |
Nanoscale | 6.7 |
IEEE JOURNAL OF SELECTED TOPICS IN QUANTUM ELECTRONICS | 4.9 |
MRS BULLETIN | 5 |
Nanophotonics | 7.5 |
Nano-Micro Letters | 26.6 |
ORGANIC ELECTRONICS | 3.2 |
Nano Energy | 17.6 |
Nano Research | 9.9 |
PROGRESS IN PHOTOVOLTAICS | 6.7 |
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