Project supported by the National Key Research and Development Program of China(Grant Nos.2016YFA0301803 and 2016YFA0302800);the National Natural Science Foundation of China(Grant Nos.11604103,11704132,11822403,and 91636218),the NSAF,China(Grant Nos.U1801661 and U1830111);the PCSIRT,China(Grant No.IRT1243);the Natural Science Foundation of Guangdong Province,China(Grant Nos.2016A030313436,2018A030313322,and 2018A0303130066);the KPST of Guangzhou(Grant No.201804020055);China Postdoctoral Science Foundation(Grant No.2018M633063);the Startup Foundation of SCNU.
We analytically and numerically investigate the dynamical properties of the tilted dispersion relativistic quasiparticles emerged in a cold atomic optical lattice system.By introducing the next nearest neighboring(NNN...
The spin-magnetic moment of the electron is revisited. In the form of the relativistic quantum mechanics, we calculate the magnetic moment of Dirac electron with no orbital angular-momentum. It is inferred that obtain...
A new form of Dirac equation of a second order partial differential equation is found. With this wave equation the quivering motion (Zitterbewegung) is satisfactorily explained. A quaternionic analogue of Dirac equati...
Project supported by the National Natural Science Foundation of China (Grant No 60671030)
Traditionally, the zitterbewegung (ZB) of the Dirac electron has just been studied at the level of quantum mechanics. Seeing the fact that an old interest in ZB has recently been rekindled by the investigations on s...
China National Natural Science Foundation and the Excellent Young Teachers Program of MOE of China (No. 69971008)
Traditionally, all the discussions relativistic quantum mechanics. In this article, on zitterbewegung (zbw) of electron are based on from the viewpoint of quantum field theory and in terms of the creation and annihi...