Journals in Low temperature physics
Journals in Low temperature physics
Cryogenics
The leading international journal of low temperature engineering including applied superconductivity, cryoelectronics, and cryophysics.Cryogeni... is the world’s leading journal that serves as a comprehensive repository of information on all aspects of cryoengineering, cryogenic technology, and low & ultra-low-temperatur... physics, specifically at temperatures below -150°C down to near absolute zero. The aim of the journal is to disseminate knowledge and information on the latest research findings and technological developments in the frontier of cryogenics. Our interdisciplinary focus spans fundamental research to industrial applications, attracting contributions from diverse fields.We welcome submissions on the following key topics:Applied superconductivityLar... scale applications of superconductivity in magnet technology (fusion, accelerator, MRI, NMR, high field, etc.) and power applications (rotating machines, transformers, cables, fault current limiters, SMES, etc.).Quantum computing and superconducting electronicsTechnolog... for quantum computing and quantum information science, including cryogenic qubits . Superconducting electronics (Josephson junctions, SQUIDS, single photon detectors, resonators, cryogenic memories, etc.).Millikelvin cooling systemsCryogenics systems for the millikelvin cooling of devices for quantum computing, quantum detectors, etc. Cryogenic electronics and photonicsElectronic components characterization at low temperatures, cryogenic power electronics. Photonics, LED, photodiodes.Cryogeni... for transportCryogenic propulsion and storage systems for aviation, maritime, and ground transportation, including the use of cryogenic fuels.Cryogenics for Space Science and TechnologySpace Propulsion, cryogenics for sensor cooling, cryogenics for planetary exploration and deep space probe, cryogenics for humans in space. Cryogenic energy storageCryogenic techniques for energy storage: liquid hydrogen (LH2), liquefied natural gas (LNG), liquid air energy storage systems (LAES) and cryogenic battery technologies.Environ... Impact and SustainabilityRole of cryogenics in renewable energy systems, carbon capture techniques, recycling, heat recovery. Environmental impact of cryogenic processes and technologies. Cryogenics for medicine and biologyAdvances in cryosurgery and cryotherapy. Cryopreservation methods for biomaterials, pharmaceuticals, organs, cells,etc.Thermo-flu... for cryogenicsThermodyna... cycles, cryogenic fluid dynamics, heat and mass transfer, cryogenic multiphase flows. Thermodynamic and transport properties of cryogenic fluids.Cryogenic processes, devices and equipmentCryogenic refrigeration, liquefaction, and separation processes. Developments in cryogenic equipment (cryocoolers, cryostats, thermal links, pulse tubes, heat exchangers, heat pipes, etc). Thermometry, measurements at low and ultra-low temperatures.Cryogen... Safety and Handling:Safe handling of cryogenic fluids, including protocols, risk assessments, and safety engineering practices.Cryogenic Materials:Developmen... characterization and manufacturing techniques of cryogenic materials: metals, polymers, composites,nanomater... metamaterials, superconducting materials.As well as original research papers, Cryogenics contains commissioned review articles on the latest developments in cryogenics worldwide, short communications, research and technical notes describing preliminary results and experimental details, novel ideas, achievements, new products from industry, and letters to the Editor on recent areas of discussion and controversy.- ISSN: 0011-2275

Physica B: Condensed Matter
Physica B: Condensed Matter comprises all condensed matter physics, including theoretical, computational, and experimental research. These contributions must be accompanied by a thorough discussion of relevant phenomena in condensed matter and materials physics. The journal is welcoming submissions exploring the following areas: • Ordered phenomena: magnetism, ferroelectricity and multiferroics; charge and orbital orderings; spin waves; superconductivity and superfluidity; nematic phases; other ordered phases in condensed matter • Disordered phenomena: amorphous materials and glasses; spin glasses and random field systems; Anderson localization; other disordered phases in condensed matter • Optics: nonlinear optical and Kerr effects; photoluminescence; other optical effects in condensed matter • Strongly correlated systems: heavy fermions; Mott insulators; Hubbard model systems; perovskites, ruthenates; superconductors; transition metal dichalcogenides; and other systems and materials with strong electron correlations • Materials physics: exploration of materials’ properties, such as electrical conductivity, optical, mechanical, thermal, and magnetic properties beyond simple characterization, underlying the material behavior. Metals, oxides, metal-organics, polymers, ceramics, semiconductors, alloys, high entropy alloys, composites, and related materials • Nanostructures and nanomaterials: theoretical and experimental exploration of nanoscale systems, including nanoparticles; nanotubes; nanowires; quantum dots, wires, wells; thin films, and other related nanomaterials • Quantum materials: quantum Hall effect, spintronics, topological insulators, spin-liquid, spin-orbit coupling materials; other materials ruled by quantum mechanical effects • Surfaces and interfaces: theoretical and experimental analyses of surface structure, surface chemistry, and interfaces in materials; applications • Computational materials: exploration of simulation methods (including molecular dynamics, Monte Carlo, and density functional theory) and modeling techniques (such as first-principles calculations, tight-binding models, and uses of machine learning) to understand materials properties or workflow developments in materials design. Investigation of materials design strategies, like high-throughput screening and other computational tools, tailored for condensed matter researchAlong the submission process, authors are requested to choose one of the following sections for their contribution:• Applied Physics• Computational Materials• Materials Physics• Nanostructures and Quantum Materials• Optics and Photonics• Ordered Phenomena• Strongly Correlated Systems- ISSN: 0921-4526
