Advances in Low Temperature Physics

Low Temperature Physics is a monthly peer-reviewed scientific journal covering all aspects of low temperature physics. The journal publishes original articles, review articles, brief communications, memoirs, and biographies. The editor-in-chief is Yurii G. Naidyuk. This is a translation of the journal Fizika Nizkikh Temperatur (in Russian), published by the B.Verkin Institute for Low Temperature Physics and Engineering of the National Academy of Sciences of Ukraine.


In the present book, twelve typical literatures about Low Temperature Physics published on international authoritative journals were selected to introduce the worldwide newest progress, which contains reviews or original researches on Low Temperature Physics. We hope this book can demonstrate advances in Low Temperature Physics as well as give references to the researchers, students and other related people.

Sample Chapter(s)
Preface (86 KB)
Components of the Book:
  • Chapter 1
    Reduction of Phonon Mean Free Path: From Low-temperature Physics to Room Temperature Applications in Thermoelectricity
  • Chapter 2
    Super-resolution of Three-dimensional Temperature and Velocity for Building-resolving Urban Micrometeorology Using Physics-guided Convolutional Neural Networks with Image Inpainting Techniques
  • Chapter 3
    Constraining Temperature at Depth of the Kakkonda Geothermal Field, Japan, Using Bayesian Rock-physics Modelling of Resistivity: Implications to the Deep Hydrothermal System
  • Chapter 4
    Superconductivity from a Melted Insulator in Josephson Junction Arrays
  • Chapter 5
    Single-track Thermal Analysis of Laser Powder Bed Fusion Process: Parametric Solution through Physics-informed Neural Networks
  • Chapter 6
    Fast, Interleaved, Look-Locker–based T1 Mapping with a Variable Averaging Approach: Towards Temperature Mapping at Low Magnetic Field
  • Chapter 7
    Physics Informed Neural Networks for Surrogate Modeling of Accidental Scenarios in Nuclear Power Plants
  • Chapter 8
    Physics-based Modelling and Data-driven Optimisation of a Latent Heat Thermal Energy Storage System with Corrugated Fins
  • Chapter 9
    Multi-scale Multi-physics Phase-field Coupled Thermo-mechanical Approach for Modeling of Powder Bed Fusion Process
  • Chapter 10
    Rate Coefficients for the Reactions of OH with Butanols from 298 K to Temperatures Relevant for Low-temperature Combustion
  • Chapter 11
    Locally Concentrated Ionic Liquid Electrolytes Enabling Low-Temperature Lithium Metal Batteries
  • Chapter 12
    Effect of Low-Temperature Physical Aging on the Dynamic Transitions of Atactic Polystyrene in the Glassy State
Readership: Students, academics, teachers and other people attending or interested in Low Temperature Physics
E. Hosseini
Empa Swiss Federal Laboratories for Materials Science & Technology, Dubendorf, Switzerland

Davide Cicolari
Department of Physics, University of Pavia,Pavia, Italy

Federico Antonello
Department of Nuclear Science and Engineering, Massachusetts Institute of Technology (MIT), Cambridge, MA, 02139, USA

Samantha L. Sime
School of Chemistry, University of Leeds, Leeds, LS2 9JT, UK

Mark A. Blitz
National Centre for Atmospheric Science (NCAS), University of Leeds, Leeds, LS2 9JT, UK

and more...
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