"Version: 20240201"--Title page verso.Includes bibliographical references.1. Introduction -- 1.1. Resonant network antennas... -- 1.2. ...for radio-frequency plasma sources -- 1.3. Evolution of the antenna design -- 1.4. Why use resonant network antennas? -- 1.5. Outline of the bookpart I. Resonant network antennas without plasma. 2 Introduction to resonant circuits -- 2.1. Definitions and conv…
"Version: 202306"--Title page verso.Includes bibliographical references.1. Introduction -- 1.1. Introduction -- 1.2. Thermonuclear fusion -- 1.3. Nuclear fusion reactions -- 1.4. The Lawson criterion -- 1.5. Fusion plasma parameters -- 1.6. Particle balance -- 1.7. Energy balance -- 1.8. Linear pinches -- 1.9. Toroidal pinches -- 1.10. Tokamaks -- 1.11. Tearing modes -- 1.12. Tearing mode rotat…
"Version: 20221201"--Title page verso.Includes bibliographical references.1. What is an ion trap? -- 1.1. Introduction -- 1.2. Equation of motion of ions and Maxwell's equation -- 1.3. Can we trap ions using only a DC electric field? -- 1.4. Trap using DC magnetic field and DC electric field (Penning trap) -- 1.5. Fundamentals of an RF trap -- 1.6. Different configurations of electrodes to give…
"Version: 20230901"--Title page verso.Revised edition of: Cold plasma cancer therapy.Includes bibliographical references.1. Introduction to non-thermal plasma physics -- 1.1. Plasma -- 1.2. Plasma quasi-neutrality -- 1.3. Plasma oscillations -- 1.4. Particle collisions -- 1.5. Plasma types -- 1.6. Cold atmospheric plasmas (CAP) -- 1.7. CAP in plasma therapy2. Cold atmospheric plasma generators …
"Version: 20200701"--Title page verso.Includes bibliographical references.1. Introduction -- 2. Wave scattering by many small impedance particles -- 2.1. Scalar wave scattering by one small body of an arbitrary shape -- 2.2. Scalar wave scattering by many small bodies of an arbitrary shape3. Creating materials with a desired refraction coefficient -- 3.1. Scalar wave scattering. Formula for the…
"Version: 20210204"--Title page verso.Includes bibliographical references.1. The fluctuation-dissipation theorem -- 1.1. Introduction -- 1.2. Linear response theory -- 1.3. Fluctuation-dissipation theorem2. Green's function method -- 2.1. Green's functions and correlations -- 2.2. Spin-waves in ferromagnets -- 2.3. Critical exponents3. Perturbative method for Green's functions -- 3.1. Time inde…
"Version: 20210204"--Title page verso.Includes bibliographical references.1. The Heisenberg model -- 1.1. Ground state for the ferromagnet -- 1.2. Spontaneous broken symmetries -- 1.3. Ground state for the antiferromagnet -- 1.4. Excited states for the ferromagnet -- 1.5. Translational symmetry -- 1.6. Two spin waves -- 1.7. Long-range order -- 1.8. Mermin and Wagner's theorem -- 1.9. The Ising…
"Version: 20230501"--Title page verso.Includes bibliographical references.1. Introduction -- 1.1. Topological insulators -- 1.2. Topological semimetals -- 1.3. Collective excitations in magnets2. Topological band theory -- 2.1. Topological invariants -- 2.2. The Su-Schrieffer-Heeger model -- 2.3. The Haldane model3. Basics of magnons -- 3.1. Magnon dispersion relation -- 3.2. Magnon excitation …
"Version: 20231101"--Title page verso.Includes bibliographical references.1. Crystal fundamentals -- 1.1. Crystal structures -- 1.2. Wave diffraction and the reciprocal lattice -- 1.3. Crystal binding -- 1.4. Exercises -- 1.5. Appendix : discrete symmetry operations2. Lattice vibrations and thermodynamics -- 2.1. Lattice vibrations -- 2.2. Lattice thermodynamics -- 2.3. Exercises3. Electronic p…
"Version: 20240201"--Title page verso.Includes bibliographical references.1. Introduction -- 1.1. Origin of magnetic moment -- 1.2. Magnetic properties of materials -- 1.3. Magnetic domain wall dynamics -- 1.4. Spintronics applications of ferrimagnet -- 1.5. Theory of current-induced DW motion -- 1.6. Features of Mn4N2. Research history of Mn4N-based mixed crystals : several research topics -- …