Fermionic Schwinger model for spinning Feshbach–Villars particle in magnetic field
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Publication:5009070
DOI10.1142/S0217751X1950101XzbMath1467.81070WikidataQ127565223 ScholiaQ127565223MaRDI QIDQ5009070
Publication date: 18 August 2021
Published in: International Journal of Modern Physics A (Search for Journal in Brave)
Path integrals in quantum mechanics (81S40) Electromagnetic interaction; quantum electrodynamics (81V10)
Cites Work
- Solution of the Feshbach-Villars equation for the step potential
- ENERGY-DEPENDENT POTENTIAL AND NORMALIZATION OF WAVE FUNCTION
- NONCOMMUTATIVE PATH INTEGRAL FOR SPINLESS RELATIVISTIC EQUATION IN THE TWO-COMPONENT THEORY
- Elementary Relativistic Wave Mechanics of Spin 0 and Spin 1/2 Particles
- Theory of the Fermi Interaction
- An eight-component relativistic wave equation for spin- particles I
- An eight-component relativistic wave equation for spin- particles II
- Path integral for the generalized Jaynes-Cummings model
- Electron propagator with vector and scalar energy-dependent potentials in (2+1)-dimensional space–time
- Energy-dependent harmonic oscillator in noncommutative space: A path integral approach
- Path integral of a relativistic spinning particle in (1+1) dimension with vector and scalar linear potentials in the presence of a minimal length
- Pair creation of spin-1/2 particles in Feshbach–Villars formalism
- Quantization of spinning particles in odd dimensions
- Relativistic wave equations and hydrogenic atoms
- Relativistic wave equations and Compton scattering
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