Materials Science in Static High Magnetic Fields: Advances in Materials Research
The study of materials science in static high magnetic fields has opened up exciting new frontiers in materials research, leading to the discovery of novel magnetic phenomena and the development of advanced materials with tailored properties. This comprehensive book provides an in-depth exploration of the field, covering both fundamental concepts and cutting-edge research directions.
Magnetic Phenomena in Materials
High magnetic fields can induce various magnetic phenomena in materials, including:
5 out of 5
Language | : | English |
File size | : | 6112 KB |
Text-to-Speech | : | Enabled |
Print length | : | 347 pages |
- Magnetic Susceptibility: Quantifies the material's response to an external magnetic field.
- Magnetization: The alignment of magnetic moments within the material.
- Hysteresis: The dependence of magnetization on the magnetic field history.
- Magnetic Resonance: The absorption and emission of electromagnetic radiation by magnetic nuclei.
Advanced Materials for High Magnetic Fields
Static high magnetic fields require materials with specific properties, such as:
- High Strength: To withstand the enormous magnetic forces.
- Low Conductivity: To minimize eddy current losses.
- Low Thermal Expansion: To prevent dimensional changes under high magnetic fields.
- Corrosion Resistance: To maintain material integrity in harsh environments.
Experimental Techniques
The book describes various experimental techniques used to study materials in high magnetic fields, including:
- Magnetic Susceptibility Measurements: Quantifying material response to external magnetic fields.
- Magnetization Measurements: Determining the magnetic moment of materials.
- Magnetic Resonance Spectroscopy: Identifying and characterizing magnetic nuclei.
- High Field Microscopy: Imaging materials at the atomic and nanoscale in high magnetic fields.
Applications of High Magnetic Fields in Materials Research
High magnetic fields have wide-ranging applications in materials research, such as:
- Superconductivity: Enhancing superconducting properties and enabling new applications.
- Spintronics: Manipulating electron spins for novel devices.
- Magneto-Optics: Controlling light properties using magnetic fields.
- Magnetic Sensors: Developing highly sensitive magnetic field detectors.
Recent Advancements and Future Directions
The book also covers recent advancements and emerging research directions in materials science in high magnetic fields, including:
- Quantum Materials: Exploring novel electronic and magnetic properties in quantum materials.
- Magnetic Metamaterials: Designing materials with tailored magnetic responses.
- Magnetic Nanostructures: Engineering magnetic properties at the nanoscale.
- High Field Processing: Utilizing high magnetic fields to modify material properties during fabrication.
"Materials Science in Static High Magnetic Fields: Advances in Materials Research" is an essential resource for researchers, scientists, and engineers working in the field of materials science and related disciplines. It provides a comprehensive understanding of the fundamental principles, experimental techniques, and cutting-edge research in this rapidly growing area. The book's well-organized and engaging prose makes it an invaluable tool for both veteran researchers and newcomers alike.
5 out of 5
Language | : | English |
File size | : | 6112 KB |
Text-to-Speech | : | Enabled |
Print length | : | 347 pages |
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5 out of 5
Language | : | English |
File size | : | 6112 KB |
Text-to-Speech | : | Enabled |
Print length | : | 347 pages |