Aims and Scope
The Journal of Low Temperature Physics is a biweekly peer-reviewed scientific journal covering the field of low temperature physics and cryogenics, including superconductivity, superfluidity, matter waves, magnetism and electronic properties, active areas in condensed matter physics, and low temperature technology. Occasionally, special issues dedicated to a particular topic are also published. According to the Journal Citation Reports, the journal has a 2019 impact factor of 1.09. The journal was established by John G. Daunt in 1969, and the current Editors-in-Chief are Neil S. Sullivan, Jukka Pekola and Paul Leiderer. Less
Key Metrics
Journal Specifications
- PublisherSPRINGER/PLENUM PUBLISHERS
- LanguageEnglish
- FrequencyMonthly
- LanguageEnglish
- FrequencyMonthly
- Publication Start Year1969
- Publisher URL
- Website URL
Months | % Papers published |
---|---|
0-3 | 17% |
4-6 | 48% |
7-9 | 21% |
>9 | 13% |
Topics Covered
Year-wise Publication
- 5Y
- 10Y
FAQs
Since when has Journal of Low Temperature Physics been publishing? 
The Journal of Low Temperature Physics has been publishing since 1969 till date.
How frequently is the Journal of Low Temperature Physics published? 
Journal of Low Temperature Physics is published Monthly.
Who is the publisher of Journal of Low Temperature Physics? 
The publisher of Journal of Low Temperature Physics is SPRINGER/PLENUM PUBLISHERS.
Where can I find a journal's aims and scope of Journal of Low Temperature Physics? 
For the Journal of Low Temperature Physics's Aims and Scope, please refer to the section above on the page.
How can I view the journal metrics of Journal of Low Temperature Physics on editage? 
For the Journal of Low Temperature Physics metrics, please refer to the section above on the page.
What is the eISSN and pISSN number of Journal of Low Temperature Physics? 
The eISSN number is 1573-7357 and pISSN number is 0022-2291 for Journal of Low Temperature Physics.
What is the focus of this journal? 
The journal covers a wide range of topics inlcuding Magnetic field, Linear array, Thermal, Specific heat, Kinetic inductance detectors, Broadband, Optical conductivity, Potential flow, Room temperature, Optical lattice, Compton scattering, Metamaterial, Dynamic range, Bound state, Raman spectroscopy, Quantum noise, Thermal simulation, Free surface, Antifreeze, X-ray detector.
Why is it important to find the right journal for my research? 
Choosing the right journal ensures that your research reaches the most relevant audience, thereby maximizing its scholarly impact and contribution to the field.
Can the choice of journal affect my academic career? 
Absolutely. Publishing in reputable journals can enhance your academic profile, making you more competitive for grants, tenure, and other professional opportunities.
Is it advisable to target high-impact journals only? 
While high-impact journals offer greater visibility, they are often highly competitive. It's essential to balance the journal's impact factor with the likelihood of your work being accepted.