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Date: 8-10-2020
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Date: 7-10-2020
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Date: 16-2-2021
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Magnetism and relativity
The classification of interactions according to their relativistic character is based on the energy of a free particle, which is given by ε2 = m2ec4 + p2c2:
..........(1)
The order of magnitude of the velocity of electrons in solids is αc, where c is the velocity of light and α is the fine-structure constant defined above. Expanding in powers of α shows the hierarchy of interactions:
.......(2)
Here mec2 = 511 keV; the second and third terms, which represent the order of magnitude of electrostatic and magnetostatic energies, are respectively 13.6 eV (the Rydberg, R0) and 0.18 meV. Magnetic dipolar interactions are therefore of order 2 K.
Note that the Pauli susceptibility can also be written in terms of the fine-structure constant as χP = α2kFa0/π, where kF is the Fermi wavevector and a0 is the Bohr radius. The force on a charged particle given by the Lorentz does not change in a moving frame, but the relative contributions of the electric and magnetic fields to the force are modified. What looks like an electric field to a stationary electron acquires a magnetic field component in the frame of a moving electron, and vice versa.
The electric field acting on an electron subject to a magnetic field in a frame in which the electron is stationary is
........(3)
Conversely, the magnetic field acting on an electron subject to an electric field in a frame where the electron is stationary is
.......(4)
This field leads to the Larmor precession of the spin of a moving electron in an electric field, which is known as the Rashba effect
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